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{{short description|Volcano in Hawaii, United States}}
{{distinguish|Mauna Kea}}
{{Other uses}} {{Other uses}}
{{pp-semi-indef}}
{{pp-move-indef}}
{{Use mdy dates|date=November 2022}}
{{Infobox mountain {{Infobox mountain
| name = Mauna Loa | name = Mauna Loa
| photo = Mauna Loa.jpg | photo = Mauna Loa Volcano.jpg
| photo_caption = Mauna Loa from Saddle Road | photo_caption = Mauna Loa as seen from the air.<br>] is visible in the background.
| photo_size = 300px
| elevation_ft = 13679
| elevation_ft = 13679
| elevation_ref = <ref name="peakbagger">{{cite peakbagger
| elevation_ref = <ref name=usgs/>
| pid = 11915
| prominence_ft = 7079
| title = Mauna Loa, Hawaii
| prominence_ref = <ref name="peakbagger">{{cite peakbagger|pid=11915|title=Mauna Loa, Hawaii|access-date=December 12, 2012}}</ref>
| accessdate = 2008-05-17 }}</ref>
| listing = {{unbulleted list
| prominence_ft = 7079
| ] 66th
| prominence_ref = <ref name="peakbagger"/>
| ] 38th
| listing = ]
| ] 2nd}}
| location = ], ]
| location = Hawaii, U.S.
| range = ]
| range = ]
| map = Hawaii
| map = United States Hawaii (island)#USA Hawaii
| lat_d = 19| lat_m = 28 | lat_s = 46.3 | lat_NS = N
| range_coordinates =
| long_d = 155 | long_m = 36 |long_s = 09.6 | long_EW = W
| coordinates = {{coord|19|28|46|N|155|36|10|W|type:mountain_region:US-HI_scale:100000|format=dms|display=inline,title}}
| topo = ] Mauna Loa
| coordinates_ref =
| type = ]
| topo = ] Mauna Loa
| age = less than 200 thousand years
| type = ]
| volcanic_arc/belt = ]
| age = 700,000–1 million<ref name=hvo-loa />
| last_eruption = 1984
| volcanic_arc/belt = ]
| first_ascent = 1794
| last_eruption = ]
| easiest_route = Truck trail
| first_ascent = Ancient times
}}
| easiest_route = ]}}
'''Mauna Loa''' ({{IPAc-en|ˌ|m|ɔː|n|ə|_|ˈ|l|oʊ|.|ə|,_|ˌ|m|aʊ|n|ə|_|-}}, {{IPA|haw|ˈmɐwnə ˈlowə|Lang|link=yes}}; {{lit|Long Mountain}}<ref name=usgs>{{cite web
| url = https://www.usgs.gov/volcanoes/mauna-loa
| title = Mauna Loa
| work = ]
| access-date = 2023-12-19}}</ref>) is one of ] that form the ] in the U.S. state of Hawaii in the ]. Mauna Loa is Earth's largest ] volcano<ref name=usgs/> by both mass and volume. It was historically considered to be the largest volcano on Earth until ] was discovered to be larger.<ref name="tamu" /> Mauna Loa is a ] with relatively gentle slopes, and a volume estimated at {{convert|18000|mi3|km3}},<ref>{{cite conference
| last = Kaye|first=G.D.
| title = Using GIS to estimate the total volume of Mauna Loa Volcano, Hawaii
| url = http://gsa.confex.com/gsa/2002CD/finalprogram/abstract_34712.htm
| work = 98th Annual Meeting
| conference = Geological Society of America
| date = 2002-05-14
| access-date = August 5, 2007
| archive-url = https://web.archive.org/web/20090125194545/http://gsa.confex.com/gsa/2002CD/finalprogram/abstract_34712.htm
| archive-date = 2009-01-25
| url-status = dead}}</ref> although its peak is about {{convert|125|ft|m|0}} lower than that of its neighbor, ].<ref name=maunakea>{{cite web
| title = Mauna Kea
| url = http://www.ngs.noaa.gov/cgi-bin/ds_mark.prl?PidBox=TU2314
| work = NGS Station Datasheet
| publisher = ]
| date = 2022-11-28}}</ref> Lava eruptions from Mauna Loa are ]-poor and very fluid, and tend to be ].


Mauna Loa has likely been erupting for at least 700,000&nbsp;years, and may have emerged above sea level about 400,000&nbsp;years ago. Some dated rocks are 470,000&nbsp;years old.<ref name=Jicha2012>{{cite journal
] of Mauna Loa|290px]]
| last1 = Jicha
| first1 = B.R.
| last2 = Rhodes
| first2 = J.M.
| last3 = Singer
| first3 = B.S.
| last4 = Garcia
| first4 = M.O.
| title = 40Ar/39Ar geochronology of submarine Mauna Loa volcano, Hawaii
| journal = Journal of Geophysical Research: Solid Earth
| year = 2012
| volume = 117
| issue = B9
| doi = 10.1029/2012JB009373
| doi-access = free}}
</ref> The volcano's ] comes from the ], which has been responsible for the creation of the ] over tens of millions of years. The slow ] of the ] will eventually carry Mauna Loa away from the hotspot within 500,000 to one million years from now, at which point it will become extinct.


] began on November 27, 2022, and ended on December 13, 2022. It was the first eruption since ].<ref name="hvo-loa-2022">{{Cite web
'''Mauna Loa''' ({{pron-en|ˌmɔːnə ˈloʊ.ə}} or {{IPA-en|ˌmaʊnə ˈloʊ.ə|}} in English, {{IPA-haw|ˈmɔunə ˈlowə|}} in Hawaiian) is the largest volcano on Earth in terms of volume and area covered and one of five volcanoes that form the ] in the ] of ] in the ]. It is an ] ], with a volume estimated at approximately 18,000&nbsp;cubic miles (75,000&nbsp;km³),<ref>{{cite conference|last=Kaye|first=G.D.|title=Using GIS to estimate the total volume of Mauna Loa Volcano, Hawaii|url=http://gsa.confex.com/gsa/2002CD/finalprogram/abstract_34712.htm|booktitle=98th Annual Meeting|conference=Geological Society of America|year=2002}}</ref> although its peak is about {{convert|120|ft|m|0}} lower than that of its neighbor, ]. The Hawaiian name "Mauna Loa" means "Long Mountain".<ref></ref> Lava eruptions from Mauna Loa are ]-poor, thus very fluid: and as a result eruptions tend to be ] and the volcano has relatively shallow slopes.
| title = HAWAIIAN VOLCANO OBSERVATORY VOLCANO OBSERVATORY NOTICE FOR AVIATION Monday, November 28, 2022, 09:45 UTC {{!}} USGS Hazard Notification System (HANS) for Volcanoes
| url = https://volcanoes.usgs.gov/hans2/view/notice/DOI-USGS-HVO-2022-11-28T01:28:44-08:00
| date = 2022-11-27
| access-date = 2022-11-28
| website = volcanoes.usgs.gov}}</ref><ref>{{Cite news |title=Hawaii's Mauna Loa volcano erupts for first time in 38 years |language=en-US |newspaper=] |url=https://www.washingtonpost.com/nation/2022/11/28/hawaii-volcano-mauna-loa-eruption/ |access-date=2022-11-29 |issn=0190-8286}}</ref> No recent eruptions of the volcano have caused fatalities, but eruptions in 1926 and 1950 destroyed villages, and the city of ] is partly built on lava flows from the late 19th century.


Because of the potential hazards it poses to population centers, Mauna Loa is part of the ] program, which encourages studies of the world's most dangerous volcanoes. Mauna Loa has been monitored intensively by the ] since 1912. Observations of the atmosphere are undertaken at the ], and of the Sun at the ], both located near the mountain's summit. ] covers the summit and portions of the southeastern and southwestern flanks of the volcano, and also incorporates ], a separate volcano.
Mauna Loa has probably been erupting for at least 700,000&nbsp;years and may have emerged above sea level about 400,000&nbsp;years ago, although the oldest-known dated rocks are not older than 200,000&nbsp;years.<ref>{{cite web | url = http://hvo.wr.usgs.gov/maunaloa/ | title = Mauna Loa: Earth's Largest Volcano | date = February 2, 2006 | accessdate = 2007-07-28| publisher = ] }}</ref> Its ] comes from the ], which has been responsible for the creation of the ] for tens of millions of years. The slow drift of the ] will eventually carry the Mauna Loa away from the hotspot, and it will then become extinct within 500,000 to one million years from now.


==Geology==
Mauna Loa's most recent eruption occurred from 24 March 1984, to 15 April 1984. No recent eruptions of the volcano have caused fatalities, but eruptions in 1926 and 1950 destroyed villages, and the city of ] is partly built on lava flows from the late 19th century. In view of the hazards it poses to population centers, Mauna Loa is part of the ] program, which encourages studies of the most dangerous volcanoes. Mauna Loa has been intensively monitored by the ] since 1912. Observations of the ] are undertaken at the ], and of the ] at the ], both located near its summit. ] covers the summit and the southeastern flank of the volcano, including a separate volcano, ].
===Setting===
{{multiple image | direction = horizontal | align=left| width1 = 187 | width2 = 200 |image1=Mauna Loa map.gif|caption1=Position of Mauna Loa on ]|image2=Island of Hawai'i - Landsat mosaic.jpg|caption2=] mosaic; recent lava flows appear in black}}


Like all Hawaiian volcanoes, Mauna Loa was created as the ] moved over the ] in the Earth's underlying ].<ref name=usgs-map>{{cite web|title=Geologic Map of the State of Hawai'i|url=http://pubs.usgs.gov/of/2007/1089/Hawaii_expl_pamphlet.pdf|work=Open-File Report 2007–1089|publisher=]|access-date=December 9, 2012|pages=50–51|year=2007|author1=David R. Sherrod |author2=John M. Sinton |author3=Sarah E. Watkins |author4=Kelly M. Brunt |name-list-style=amp}}</ref> The Hawaii island volcanoes are the most recent evidence of this process that, over 70&nbsp;million years, has created the {{convert|3700|mi|km|abbr=on}}-long ].<ref name="Watson">{{cite web|last=Watson|first=Jim|title=The long trail of the Hawaiian hotspot|url=http://pubs.usgs.gov/gip/dynamic/Hawaiian.html|publisher=United States Geological Survey|access-date=August 26, 2010|date=May 5, 1999}}</ref> The prevailing view states that the hotspot has been largely stationary within the planet's mantle for much, if not all of the ] Era.<ref name="Watson"/><ref>{{cite web|url=http://www.mantleplumes.org/Hawaii.html|title=The Emperor and Hawaiian Volcanic Chains: How well do they fit the plume hypothesis?|author1=Foulger, G.R |author2=Anderson, Don L.
==structer==
|publisher=MantlePlumes.org|date=March 11, 2006|access-date=April 1, 2009}}</ref> However, while the Hawaiian ] is well understood and extensively studied, the nature of hotspots themselves remains fairly enigmatic.<ref>{{Cite book|year=1987 |title=Volcanism in Hawaii: papers to commemorate the 75th anniversary of the founding of the Hawaii Volcano Observatory |chapter=The Hawaiian-Emperor Volcanic Chain – Geological Evolution |publisher=United States Geological Survey |volume=1 |series=Professional Paper 1350 |chapter-url=https://pubs.usgs.gov/pp/1987/1350/pdf/chapters/pp1350_ch1.pdf |page=32 |author1=Clague, David A. |author2=Dalrymple, G. Brent}}</ref>
] and surrounding flows on Mauna Loa.]]
] on the left, Mauna Loa behind ] on right]]
Mauna Loa is the world's largest ] in terms of area covered. Mauna Loa is shaped like a shield, because its lava is extremely ] (it has low ]), and its slopes are not steep. Eruptions are rarely violent, and the most common form is in the ], which involves ]s feeding ]s. Typically, at the start of an eruption, a ] up to several kilometers long opens, with lava fountains occurring along its length in a so-called "curtain of fire." After a few days, activity normally becomes concentrated at one vent.<ref>MacDonald G, Hubbard DG (1974). . Hawaii Natural History Association Ltd. Retrieved on 2007-07-28.</ref>


Mauna Loa is one of five ]{{efn|occurring on or near the Earth's land surface as opposed to submarine (below the sea), sub-glacial (below a glacier), etc.}} volcanoes that make up the island of ].<ref>{{cite book |editor1-last=Juvik |editor1-first=Sonia P. |editor2-last=Juvik |editor2-first=James O. |title=Atlas of Hawaiʻi |date=1998 |publisher=University of Hawaiʻi Press |isbn=0-8248-2125-4 |page=44 |edition=3rd |quote=Hawaiʻi Island. Hawaiʻi consists of five coalescent, subaerial (above sea level) volcanoes...}}</ref> The oldest volcano on the island, ], is more than a million years old,<ref>{{cite web |last1=Sherrod |first1=David R. |last2=Sinton |first2=James M. |last3=Watkins |first3=Sarah E. |last4=Brunt |first4=Kelly M. |title=Geologic Map of the State of Hawaiʻi |date=2007 |publisher=United States Geological Survey |location=Reston, Virginia |page=41 |url=https://pubs.usgs.gov/of/2007/1089/Hawaii_expl_pamphlet.pdf}}</ref> and ], the youngest, is believed to be between 210,000 and 280,000 years of age.<ref>{{cite web |title=Kīlauea: Geology and History |url=https://www.usgs.gov/volcanoes/kilauea/geology-and-history |website=U.S. Geological Survey |access-date=December 25, 2021}}</ref> ] (formerly Lōʻihi) on the island's flank is even younger, but has yet to breach the surface of the Pacific Ocean.<ref>{{cite book |author1=David A. Clague |author2=David R. Sherrod |editor1-last=Poland |editor1-first=Michael P. |editor2-last=Takahashi |editor2-first=T. Jane |editor3-last=Landowski |editor3-first=Claire M. |title=Characteristics of Hawaiian volcanoes, Professional Paper 1801 |date=2014 |publisher=U.S. Geological Survey |location=Reston, VA |chapter=Growth and degradation of Hawaiian volcanoes|page=104|url=https://pubs.usgs.gov/pp/1801/downloads/pp1801_Chap3_Clague.pdf}}</ref> At 1&nbsp;million to 600,000 years of age,<ref name="USGS-Mauna Loa history">{{cite web|title=Mauna Loa: Earth's Largest Volcano|url=https://www.usgs.gov/volcanoes/mauna-loa/geology-and-history|publisher=Hawaiian Volcano Observatory – ]|access-date=January 29, 2022}}</ref> Mauna Loa is the second youngest of the five volcanoes on the island, making it the ] youngest volcano in the ], a chain of ]es and ]s extending from ] to the ] in ].<ref name="USGS Hotspots">{{cite book|url=http://pubs.usgs.gov/gip/dynamic/hotspots.html|title="Hotspots": Mantle thermal plumes|publisher=United States Geological Survey|edition=1.14|year=1996|isbn=978-0-16-048220-5|author1=W. J. Kious |author2=R. I. Tilling |name-list-style=amp |access-date=December 9, 2012}}</ref>
Eruptions generally occur in three regions on the mountain: at the summit and in two ]s extending northeast and southwest of the summit. About 38% of eruptions in the last two hundred years have occurred at the summit, 31% in the northeast rift zone, and 25% in the southwest rift zone. The remaining 6% have occurred from vents to the northwest of the summit, away from the rift zones.<ref name="SOEST">{{cite web|url=http://www.soest.hawaii.edu/GG/HCV/mloa-eruptions.html|title=Mauna Loa eruption history|publisher=Hawaii Center for Volcanology|accessdate=2007-07-28|last=Rubin|first=Ken|coauthors=Rochelle Minicola|year=2004}}</ref> Its summit ] is called ''Moku{{okina}}āweoweo''; it is 1.75 to 3&nbsp;miles (3–5&nbsp;km) in diameter. The caldera probably formed 1,000&ndash;1,500&nbsp;years ago when a very large eruption from the northeast rift zone emptied out the shallow ] beneath the summit, which then collapsed.<ref> ], Hawaiian Volcano Observatory. March 22, 2001. Retrieved on 2007-07-28.</ref>


]
] data can reveal the locations of the magma chambers beneath the volcano which feed activity. Some types of ]s, known as "]s," cannot travel through liquid rock, so magma chambers cast 'shadows' in seismic data. Seismic shadows reveal a magma chamber about 1.75&nbsp;miles (3&nbsp;km) beneath the summit and smaller magma bodies beneath the rift zones.<ref> ], Hawaiian Volcano Observatory. October 18, 2001. Retrieved on 2007-07-28.</ref>


Following the ] of Hawaiian volcano formation, Mauna Loa would have started as a ], gradually building itself up through underwater eruptions of ] ] before emerging from the sea through a series of ]s<ref name=hov-evolution>{{cite web|title=Evolution of Hawaiian Volcanoes|url=https://www.usgs.gov/news/volcano-watch-evolution-hawaiian-volcanoes|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 29, 2022|date=March 26, 1998}}</ref> about 400,000 years ago. Since then, the volcano has remained active, with a history of ] and ] eruptions, including 34 eruptions since the first well-documented eruption in 1843.<ref name="hvo-loa">{{cite web |title=Mauna Loa |url=https://www.usgs.gov/volcanoes/mauna-loa |website=US Geological Survey |access-date=January 29, 2022}}</ref>
]s blow from east to west across the Hawaiian islands, and the presence of Mauna Loa strongly affects the local climate. At low elevations, the eastern (windward) side of the volcano receives heavy rain, and the city of ] is the wettest in the United States. The rainfall supports extensive ]ation. The western (leeward) side has a much drier climate. At higher elevations, the amount of precipitation decreases, and skies are very often clear. Very low temperatures mean that precipitation often occurs in the form of snow, and the summit of Mauna Loa is described as a '']'' region, where freezing and thawing play a significant role in shaping the landscape.<ref>{{cite web|url=http://www.soest.hawaii.edu/GG/HCV/mloa-flora.html|title=Mauna Loa Flora and Climate|publisher=Hawaii Center for Volcanology|year=2004|accessdate=2007-07-28|last=Rubin|first=Ken|coauthors=Rochelle Minicola}}</ref>


===Structure===
==Moku{{okina}}āweoweo==
{{multiple image
]
| align = right
'''Moku{{okina}}āweoweo''' is the summit crater (]) of Mauna Loa. Although a trail was developed in ancient times, Mokuaweoweo proved a difficult goal for the first outsiders who underestimated the difficulty of the journey. An American visit in 1840 turned into a trip of almost a month. Historically very active, Moku{{okina}}āweoweo has been quiet since 1984.
| direction = vertical
| width = 300
| image1 = Mauna Loa Observatory.jpg
| caption1 = Mauna Loa's summit, overlaid with {{convert|100|m|ft|0|abbr=on}} ]; its rift zones are visible from the air.
| image2 = Mokuaweoweo from the air.gif
| caption2 = Mokuʻāweoweo, Mauna Loa's ], covered in snow.}}


Mauna Loa is the largest active volcano on Earth and the planet's third largest volcano behind ],<ref name=Garcia2020>{{Cite journal |last1=Garcia |first1=Michael O. |last2=Tree |first2=Jonathan P. |last3=Wessel |first3=Paul |last4=Smith |first4=John R. |date=2020-07-15 |title=Pūhāhonu: Earth's biggest and hottest shield volcano |journal=Earth and Planetary Science Letters |language=en |volume=542 |pages=116296 |doi=10.1016/j.epsl.2020.116296 |issn=0012-821X|doi-access=free |bibcode=2020E&PSL.54216296G}}</ref> which is also in the Hawaiian chain, and the ].<ref name=tamu>{{cite magazine | magazine = National Geographic | title = New Giant Volcano Below Sea Is Largest in the World | url = http://news.nationalgeographic.com/news/2013/09/130905-tamu-massif-shatsky-rise-largest-volcano-oceanography-science/ | archive-url = https://web.archive.org/web/20130906013208/http://news.nationalgeographic.com/news/2013/09/130905-tamu-massif-shatsky-rise-largest-volcano-oceanography-science/ | url-status = dead | archive-date = September 6, 2013 | author = Brian Clark Howard | date = September 5, 2013}}</ref><ref name="ngs">{{Cite journal | journal = Nature Geoscience | volume = 6 | issue = 11 | pages = 976–981 | title = An immense shield volcano within the Shatsky Rise oceanic plateau, northwest Pacific Ocean | last = Sager |first=William W. |author2=Zhang, Jinchang |author3=Korenaga, Jun |author4=Sano, Takashi |author5=Koppers, Anthony A. P. |author6=Widdowson, Mike |author7= Mahoney, John J. | date = September 6, 2013 |doi=10.1038/ngeo1934 | bibcode= 2013NatGe...6..976S}}</ref> It covers a land area of {{convert|5271|km2|mi2|0|abbr=on}} and spans a maximum width of {{convert|120|km|mi|0|abbr=on}}.<ref name="hvo-loa"/> Consisting of approximately {{convert|65000|to|80000|km3|mi3|-2|abbr=on}} of solid rock,<ref name=nps-loa>{{cite web|title=Mauna Loa, Fiery Colossus of the Pacific|author1=G. Macdonald|author2=D. Hubbard|name-list-style=amp|orig-year=1951, 7th ed. revision December 1974|url=http://www.cr.nps.gov/history/online_books/hawaii-notes/vol4-2-7e.htm|publisher=]|access-date=December 9, 2012|date=March 24, 2006|url-status=dead|archive-url=https://web.archive.org/web/20131020022158/http://www.cr.nps.gov/history/online_books/hawaii-notes/vol4-2-7e.htm|archive-date=October 20, 2013}}</ref> it makes up more than half of the surface area of the island of Hawaiʻi. Combining the volcano's extensive submarine flanks ({{convert|5000|m|ft|-2|abbr=on}} to the sea floor) and {{convert|4170|m|ft|-1|abbr=on}} subaerial height, Mauna Loa rises {{convert|9170|m|ft|0|abbr=on}} from base to summit,<ref name="hvo-loa"/><ref name=soest-loa>{{cite web|title=Mauna Loa Volcano|url=http://www.soest.hawaii.edu/GG/HCV/maunaloa.html|author1=Rubin, Ken |author2= Minicola, Rochelle|publisher=Hawaiian Volcano Observatory – United States Geological Survey|date=March 20, 2009|access-date=December 12, 2012}}</ref> greater than the {{convert|8848|m|ft|0|abbr=on|disp=or}}<ref>{{cite news|title=Nepal in new bid to finally settle Mount Everest height|url=https://www.bbc.co.uk/news/science-environment-17191400|work=]|access-date=December 10, 2012|author=Navin Singh Khadka|date=February 28, 2012}}</ref> elevation of ] from sea level to its summit. In addition, much of the mountain is invisible even underwater: its mass depresses the ] beneath it by another {{convert|8|km|mi|0|abbr=on}}, in the shape of an inverse mountain,<ref name="gspp">{{cite journal|url=https://books.google.com/books?id=wRosAQAAIAAJ&pg=PA95|title=Subsidence of the Hawaiian Ridge|author=J.G. Moore|journal=Volcanism in Hawaii: Geological Survey Professional Paper| volume= 1350 |issue= 1|year=1987}}</ref> meaning the total height of Mauna Loa from the start of its eruptive history is about {{convert|17170|m|ft|-3|abbr=on}}.<ref>{{cite web|title=How High is Mauna Loa?|url=http://hvo.wr.usgs.gov/volcanowatch/archive/1998/98_08_20.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=February 5, 2013|date=August 20, 1998}}</ref>
The name of the summit crater is derived from the ''{{okina}}āweoweo'', a red Hawaiian big-eyed fish, '']'', purportedly due to resemblance of the eruptive fires to the color of the fish.<ref>{{cite web| url=http://www.wehewehe.org/gsdl2.5/cgi-bin/hdict?a=q&r=1&hs=1&e=q-0hdict--00-0-0--010---4----den--0-000lpm--1haw-Zz-1---Zz-1-home---00031-0000escapewin-00&q=mokuaweoweo&j=pp&hdid=0&hdds=0 |title=lookup of "Mokuaweoweo" |publisher=Place Names of Hawaii web site |accessdate=2009-10-20 }}</ref> The main oval depression is about {{convert|3|mi|m}} long and {{convert|1.5|mi|m}} wide.
Two side craters, partially fused with the main one, are known as North Pit and South Pit. Southwest of the summit caldera are two smaller pit craters, ''Lua Hou'' (New Pit) and ''Lua Hohonu'' (Deep Pit).<ref name="npsbrochure"/>


{{anchor|Mokuaweoweo}}
Moku{{okina}}āweoweo is now part of the ] area, in the U.S. ].<ref>{{cite web| url=http://www.recreation.gov/recAreaDetails.do?contractCode=NRSO&recAreaId=5068&agencyCode=145 |title=Hawaii Volcanoes Wilderness Area |publisher=Recreation.gov |accessdate=2009-07-04 }}</ref>
]
Mauna Loa is a typical ] in form, taking the shape of a long, broad dome extending down to the ocean floor whose slopes are about 12° at their steepest, a consequence of its extremely fluid lava. The shield-stage lavas that built the enormous main mass of the mountain are ]s, like those of ], created through the mixing of primary ] and ] oceanic crust.<ref>{{cite journal|author=Claude Herzberg| title = Petrology and thermal structure of the Hawaiian plume from Mauna Kea volcano| journal = ]| publisher = ]| volume = 444| issue = 7119| pages = 605–09| date = November 30, 2006| pmid = 17136091| doi = 10.1038/nature05254 |bibcode = 2006Natur.444..605H | s2cid = 4366221}}</ref> Mauna Loa's summit hosts three overlapping ]s arranged northeast–southwest, the first and last roughly {{convert|1|km|mi|1|abbr=on}} in diameter and the second an oblong {{convert|4.2|x|2.5|km|1|abbr=on}} feature; together these three craters make up the {{convert|6.2|by|2.5|km|mi|1|abbr=on}} summit caldera Mokuʻāweoweo,<ref name=hvo-caldera>{{cite web|title=When did Moku'aweoweo (the summit caldera of Mauna Loa) form?|publisher=Hawaiian Volcano Observatory – United States Geological Survey|url=http://hvo.wr.usgs.gov/volcanowatch/archive/2001/01_03_22.html|access-date=December 11, 2012|date=March 28, 2001}}</ref> so named for the Hawaiian ʻāweoweo fish ('']''), purportedly due to the resemblance of its eruptive fires to the coloration of the fish.<ref>{{cite web|title=Place Names of Hawaii – Moku-ʻāweoweo|url=http://www.wehewehe.org/gsdl2.5/cgi-bin/hdict?a=q&r=1&hs=1&e=q-0hdict--00-0-0--010---4----den--0-000lpm--1haw-Zz-1---Zz-1-home---00031-0000escapewin-00&q=mokuaweoweo&j=pp&hdid=0&hdds=0|archive-url=https://archive.today/20121228082508/http://www.wehewehe.org/gsdl2.5/cgi-bin/hdict?a=q&r=1&hs=1&e=q-0hdict--00-0-0--010---4----den--0-000lpm--1haw-Zz-1---Zz-1-home---00031-0000escapewin-00&q=mokuaweoweo&j=pp&hdid=0&hdds=0|url-status=dead|archive-date=December 28, 2012|publisher=Ulukau – Hawaiian Electronic Library|access-date=December 11, 2012}}</ref> Mokuʻāweoweo's caldera floor lies between {{convert|170|and|50|m|0|abbr=on}} beneath its rim and it is only the latest of several calderas that have formed and reformed over the volcano's life. It was created between 1,000 and 1,500 years ago by a large eruption from Mauna Loa's northeast rift zone, which emptied out a shallow ] beneath the summit and collapsed it into its present form.<ref name=hvo-caldera/> Additionally, two smaller pit craters lie southwest of the caldera, named Lua Hou (New Pit) and Lua Hohonu (Deep Pit).<ref name=nps-loa />


Mauna Loa's summit is also the focal point for its two prominent ]s, marked on the surface by well-preserved, relatively recent lava flows (easily seen in satellite imagery) and linearly arranged ] intersected by ] and ]s.<ref name=ajs-1980/> These rift zones are deeply set structures, driven by ] intrusions along a ] that is believed to reach down all the way to the volcano's base, {{convert|12|to|14|km|0|abbr=on}} deep.<ref name=science-stress /> The first is a {{convert|60|km|mi|0|abbr=on}} rift trending southwest from the caldera to the sea and a further {{convert|40|km|mi|0|abbr=on}} underwater, with a prominent 40° directional change along its length; this rift zone is historically active across most of its length. The second, northeastern rift zone extends towards ] and is historically active across only the first {{convert|20|km|mi|0|abbr=on}} of its length, with a nearly straight and, in its latter sections, poorly defined trend.<ref name=ajs-1980>{{cite journal|title=The Southwestern Rift Zone of Mauna Kea: Implications for Structural Evolution of Hawaiian Volcanoes|journal=]|year=1980|volume=280-A|pages=752–76|author=Peter W. Lipman|publisher=American Journal of Science}}</ref> The northeastern rift zone takes the form of a succession of cinder cones, the most prominent of which the {{convert|60|m|ft|0|abbr=on}} high Puu Ulaula, or Red Hill. There is also a less definite northward rift zone that extends towards the Humuula Saddle marking the intersection of Mauna Loa and Mauna Kea.<ref name=nps-loa />
==Geology and history==
===Origins===
Mauna Loa began erupting between 700,000 and 1,000,000&nbsp;years ago and has grown steadily since then. Like all of the ], Mauna Loa has its origins in the ]&mdash;a plume of magma rising from deep in the Earth's ]. The hotspot remains in a fixed position, while the ] drifts over it at a rate of about {{convert|4|in|cm|0}} per year. The upwelling of the hot magma creates volcanoes, and each individual volcano erupts for a few million years before the movement of the plate carries it away from the rising magma.


Simplified geophysical models of Mauna Loa's ] have been constructed, using ] measures of ] due to the slow buildup of lava under the volcano's surface. These models predict a {{convert|1.1|km|mi|0|abbr=on}} wide magma chamber located at a depth of about {{convert|4.7|km|mi|0|abbr=on}}, {{convert|0.5|km|mi|0|abbr=on}} below ], near the southeastern margin of Mokuʻāweoweo. This shallow magma chamber is significantly higher-placed than Mauna Loa's rift zones, suggesting magma ]s into the deeper parts and occasional dike injections into the shallower parts of the rift zone drive rift activity; a similar mechanism has been proposed for neighboring ].<ref name=science-stress /> Earlier models, based on Mauna Loa's 1975 and 1984 eruptions, made a similar prediction, placing the chamber at {{convert|3|km|mi|1|abbr=on}} deep in roughly the same geographic position.<ref>{{cite web|title=What's up with Mauna Loa?|url=http://hvo.wr.usgs.gov/volcanowatch/archive/2001/01_10_18.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=December 16, 2012|date=October 23, 2001|url-status=dead|archive-url=https://web.archive.org/web/20120919133433/https://hvo.wr.usgs.gov/volcanowatch/archive/2001/01_10_18.html|archive-date=September 19, 2012}}</ref>
The hotspot has existed for at least 80&nbsp;million years, and the ] chain of old volcanoes stretches almost {{convert|3600|mi|km|-2}} away from the hotspot. Currently, the hotspot feeds activity at five volcanoes: Mauna Loa, ], and ] on the ], ] on ], and ], a submarine volcano south of the Big Island and the youngest Hawaiian volcano. Mauna Loa is the largest of these, although Kīlauea is currently the site of the most intense volcanic activity.<ref name="Decker">Decker R, Decker B (1997). ''Volcanoes'', W.H. Freeman & Co, Ltd, ISBN 0-7167-3174-6</ref>

Mauna Loa has complex interactions with its neighbors, ] to the northwest, ] to the northeast, and particularly ] to the east. Lavas from Mauna Kea intersect with Mauna Loa's basal flows as a consequence of Kea's older age,<ref name="pp1557">{{cite book|author1=E. W. Wolfe|author2=W. S. Wise|author3=G. B. Dalrymple|title=The geology and petrology of Mauna Kea volcano, Hawaii : a study of postshield volcanism|url=https://pubs.er.usgs.gov/djvu/PP/pp_1557.djvu|series=Professional Paper 1557|year=1997|publisher=United States Geological Survey|access-date=December 12, 2012|archive-date=June 15, 2011|archive-url=https://web.archive.org/web/20110615111115/http://http/|url-status=dead}}</ref> and Mauna Kea's original ]s were buried beneath post-shield volcanic rocks of Mauna Loa;<ref name="usgs-database">{{cite web|title=Complete Report for Mauna Kea Volcano (Class B) No. 2601 |url=http://gldims.cr.usgs.gov/webapps/cfusion/sites/qfault/qf_web_disp.cfm?disp_cd=C&qfault_or=5107&ims_cf_cd=cf |publisher=United States Geological Survey |access-date=December 12, 2012 |author1=E. C. Cannon |author2=R. R. Bürgmann |name-list-style=amp |date=October 26, 2009 |url-status=dead |archive-url=https://web.archive.org/web/20120305184251/http://gldims.cr.usgs.gov/webapps/cfusion/sites/qfault/qf_web_disp.cfm?disp_cd=C&qfault_or=5107&ims_cf_cd=cf |archive-date=March 5, 2012}}</ref> additionally, Mauna Kea shares Mauna Loa's gravity well, depressing the ] beneath it by {{convert|6|km|mi|0|abbr=on}}.<ref name="pp1557"/> There are also a series of ]s on Mauna Loa's northern and western slopes, between its two major rift zones, that are believed to be the result of combined circumferential tension from the two rift zones and from added pressure due to the westward growth of neighboring Kīlauea.<ref name=osu-rifts>{{cite web|title=Rift Zones|url=http://volcano.oregonstate.edu/book/export/html/124|publisher=]|access-date=December 13, 2012}}</ref>

]
Because Kīlauea lacks ] and appears as a bulge on the southeastern flank of Mauna Loa, it was historically interpreted by both native Hawaiians and early geologists to be an active satellite of Mauna Loa. However, analysis of the chemical composition of lavas from the two volcanoes show that they have separate ]s, and are thus distinct. Nonetheless, their proximity has led to a historical trend in which high activity at one volcano roughly coincides with low activity at the other. When Kīlauea lay dormant between 1934 and 1952, Mauna Loa became active, and when the latter remained quiet from 1952 to 1974, the reverse was true. This is not always the case; the ] started during an eruption at Kīlauea, but had no discernible effect on the Kīlauea eruption, and the ] occurred during an eruption of Kīlauea. Geologists have suggested that "pulses" of magma entering Mauna Loa's deeper magma system may have increased pressure inside Kīlauea and triggered the concurrent eruptions.<ref name="hvo-loa_kilauea">{{cite web|title=Inflation of Mauna Loa Volcano slows|publisher=Hawaiian Volcano Observatory – United States Geological Survey|work=Volcano Watch|date=January 28, 2003|url=http://hvo.wr.usgs.gov/volcanowatch/2003/03_01_23.html|access-date=January 30, 2012}}</ref>

Mauna Loa is slumping eastward along its southwestern rift zone, leveraging its mass into Kīlauea and driving the latter eastward at a rate of about {{convert|10|cm|in|0|abbr=on}} per year; the interaction between the two volcanoes in this manner has generated a number of large earthquakes in the past, and has resulted in a significant area of debris off Kīlauea's seaward flank known as the ]. A system of older faults exists on the southeastern side of Mauna Loa that likely formed before Kilauea became large enough to impede Mauna Loa's slump, the lowest and northernmost of which, the Kaoiki fault, remains an active earthquake center today. The west side of Mauna Loa, meanwhile, is unimpeded in movement, and indeed is believed to have undergone a massive slump collapse between 100,000 and 200,000 years ago, the residue from which, consisting of a scattering of debris up to several kilometers wide and up to {{convert|50|km|mi|0|abbr=on}} distant, is still visible today. The damage was so extensive that the headwall of the damage likely intersected its southwestern rift zone. There is very little movement there today, a consequence of the volcano's geometry.<ref name="uh-landslides">{{cite web |author=Ken Hon |author-link=Ken Hon |title=Giant Landslides: Kilauea and Mauna Loa: GEOL 205: Lecture Notes |url=http://hilo.hawaii.edu/~kenhon/GEOL205/Landslides/default.htm |access-date=December 16, 2012 |publisher=]}}</ref>

]
Mauna Loa is tall enough to have experienced ] during the last ice age, 25,000 to 15,000 years ago.<ref name=usgs-map /> Unlike Mauna Kea, on which extensive evidence of glaciation remains even today,<ref>{{cite web|url=http://hvo.wr.usgs.gov/volcanowatch/archive/2001/01_10_18.html|title=Glaciers on Mauna Kea? You crazy? In the middle of the Pacific? YES!|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=December 16, 2012|date=October 22, 2007}}</ref> Mauna Loa was at the time and has remained active, having grown an additional {{convert|150|to|300|m|ft|0|abbr=on}} in height since then and covering any glacial deposits beneath new flows; strata of that age don't occur until at least {{convert|2000|m|ft|0|abbr=on}} down from the volcano's summit, too low for glacial growth. Mauna Loa also lacks its neighbor's summit ] region, although sporadic ice persists in places. It is speculated that extensive ] activity occurred during this time, contributing extensively to ] deposits on the summit.<ref name=usgs-map />
{{clear}}

==Eruptive history==
{{see also|List of Mauna Loa eruptions}}


===Prehistoric eruptions=== ===Prehistoric eruptions===
] ] and surrounding flows on Mauna Loa]]
To have reached its enormous size within its relatively short (geologically speaking) 600,000 to 1,000,000 years of life, Mauna Loa would logically have had to have grown extremely rapidly through its developmental history,<ref name=hvo-erupt /> and extensive ]-based ] (perhaps the most extensive such prehistorical eruptive dating on Earth<ref name=soest-erupt /><ref name=hvo-model>{{cite web|title=Eruption History: A Cyclic Eruption Model is Proposed|url=http://hvo.wr.usgs.gov/maunaloa/history/model.html|publisher=HVO|access-date=December 25, 2012|date=March 16, 1998|archive-date=August 21, 2007|archive-url=https://web.archive.org/web/20070821145956/http://hvo.wr.usgs.gov/maunaloa/history/model.html|url-status=dead}}</ref>) has amassed a record of almost two hundred<!-- ~200 in the 2006 HVO eruption summary, 170 is the older 1980s era papers --> reliably dated extant flows confirming this hypothesis.<ref name=hvo-erupt />
Prehistoric eruptions of Mauna Loa have been extensively analyzed by carrying out ] on fragments of ] found beneath lava flows. The mountain's prehistoric activity is probably the best known of any volcano. Studies have shown that a cycle occurs in which volcanic activity at the summit is dominant for several hundred years, after which activity shifts to the rift zones for several more centuries, and then back to the summit again. Two cycles have been clearly identified, each lasting 1,500&ndash;2,000&nbsp;years. This cyclical behavior is unique to Mauna Loa among the Hawaiian volcanoes.<ref>Lockwood J.P. (1995), "Mauna Loa eruptive history - the preliminary radiocarbon record", in Rhodes, J.M. and Lockwood, J.P. (eds.), ''Mauna Loa revealed: structure, composition, history, and hazards'', Washington D.C., American Geophysical Union Monograph 92, p. 81–94.</ref>


Lava samples, including those obtained by drilling projects, have been dated at least to 470,000&nbsp;years ago.<ref name=Jicha2012/> For technical reasons the oldest ages obtained by modern techniques at 657,000&nbsp;years ago have large errors of the order of 200,000&nbsp;years, as did some historic dating attempts on younger lavas making them older than was the case.<ref name=Jicha2012/>{{rp|loc=Conclusions}} Some of the oldest exposed flows on Mauna Loa are the Ninole Hills on its southern flank, subaerial ] rock dating back approximately 100 to 200 thousand years.<ref name=Jicha2012/> They form a terrace against which younger flows have since banked, heavily eroded and incised against its slope in terms of direction; this is believed to be the result of a period of erosion because of a change in the direction of lava flow caused by the volcano's prehistoric slump. These are followed by two units of lava flows separated by an intervening ] layer known as the Pāhala ash layer: the older Kahuka basalt, sparsely exposed on the lower southwest rift, and the younger and far more widespread Kaʻu basalt, which appear more widely on the volcano. The Pāhala ashes themselves were produced over a long period of time circa 13 to 30 thousand years ago, although heavy ] and interactions with post- and pre- creation flows has hindered exact dating. Their age roughly corresponds to the glaciation of Mauna Loa during the last ice age, raising the distinct possibility that it is the product of ] interaction between the long-gone glaciers and Mauna Loa's eruptive activities.<ref name=usgs-map />
Records show that between about 7,000 and 6,000&nbsp;years ago Mauna Loa was largely inactive. The cause of this cessation in activity is not known, and no known similar hiatus has been found at other Hawaiian volcanoes except for those currently in the post-shield stage. Between 11,000 and 8,000&nbsp;years ago, activity was more intense than it is today.<ref name="SOEST" /> However, Mauna Loa's overall rate of growth has probably begun to slow over the last 100,000&nbsp;years,<ref>{{cite web | url = http://hvo.wr.usgs.gov/maunaloa/history/main.html | title = Eruption History of Mauna Loa Volcano| publisher = ], Hawaiian Volcano Observatory | accessdate = 2007-07-28}}</ref> and the volcano may in fact be nearing the end of its ] shield-building phase.<ref>{{cite web | url = http://hvo.wr.usgs.gov/maunaloa/history/model.html | title = Eruption History: A Cyclic Eruption Model is Proposed | publisher = ], Hawaiian Volcano Observatory | date = March 16, 1998 | accessdate = 2007-07-28}}</ref>


Studies have shown that a cycle occurs in which volcanic activity at the summit is dominant for several hundred years, after which activity shifts to the rift zones for several more centuries, and then back to the summit again. Two cycles have been clearly identified, each lasting 1,500–2,000&nbsp;years. This cyclical behavior is unique to Mauna Loa among the Hawaiian volcanoes.<ref>Lockwood J.P. (1995), "Mauna Loa eruptive history – the preliminary radiocarbon record", in Rhodes, J.M. and Lockwood, J.P. (eds.), ''Mauna Loa revealed: structure, composition, history, and hazards'', Washington D.C., American Geophysical Union Monograph 92, pp. 81–94.</ref> Between about 7,000 and 6,000&nbsp;years ago Mauna Loa was largely inactive. The cause of this cessation in activity is not known, and no known similar hiatus has been found at other Hawaiian volcanoes except for those currently in the post-shield stage. Between 11,000 and 8,000&nbsp;years ago, activity was more intense than it is today.<ref name=soest-erupt /> However, Mauna Loa's overall rate of growth has probably begun to slow over the last 100,000&nbsp;years,<ref>{{cite web | url = http://hvo.wr.usgs.gov/maunaloa/history/main.html | title = Eruption History of Mauna Loa Volcano | publisher = United States Geological Survey, Hawaiian Volcano Observatory | access-date = July 28, 2007 | archive-date = August 19, 2007 | archive-url = https://web.archive.org/web/20070819083329/http://hvo.wr.usgs.gov/maunaloa/history/main.html | url-status = dead }}</ref> and the volcano may in fact be nearing the end of its ] shield-building phase.<ref>{{cite web | url = http://hvo.wr.usgs.gov/maunaloa/history/model.html | title = Eruption History: A Cyclic Eruption Model is Proposed | publisher = United States Geological Survey, Hawaiian Volcano Observatory | date = March 16, 1998 | access-date = July 28, 2007 | archive-date = August 21, 2007 | archive-url = https://web.archive.org/web/20070821145956/http://hvo.wr.usgs.gov/maunaloa/history/model.html | url-status = dead }}</ref>
==Ascents==
===Prehistoric===
The ] was established in prehistoric times, rising from the village of Kapāpala over {{convert|11200|ft|m}} in about {{convert|35|mi|km}}. Although the more active and accessible ] caldera was the usual site to honor the ], offerings and prayers were also made on Moku{{okina}}āweoweo during its eruptions. Journeys up the trail extended over many days and required many porters. Several established camps along the way supplied water and food.<ref name="nrhpinv2">{{Cite book|title={{PDFlink||637&nbsp;KB}}|date=July 18, 1973 |author=Russell A. Apple |publisher=], National Park Service |accessdate=2009-07-03}}</ref>


===John Ledyard=== === Recent history ===
] channel flow from Mauna Loa, 1984]]
] led a team to attempt an ascent on the third voyage of Captain ] in January 1779. They struggled to go directly up from ], but turned back after an estimated {{convert|24|mi|km}}, thinking they had about {{convert|11|mi|km}} more to go.<ref name="measuring">{{cite journal| title=Measuring the Mountain: the United States Exploring Expedition on Mauna Loa, 1840-1841 |publisher=Hawaiian Historical Society, Honolulu |author=Roberta A. Sprague |url=http://hdl.handle.net/10524/359 |journal=Hawaiian Journal of History |volume=25 |year=1991 |accessdate=2009-07-05 }}</ref>
]ans have been present on Hawaiʻi island for about 1,500 years, but they preserved almost no records on volcanic activity on the island, beyond a few fragmentary accounts dating to the late 18th and early 19th centuries.<ref name=hvo-erupthist>{{cite web|title=Summary of Historical Eruptions, 1843–Present|url=http://hvo.wr.usgs.gov/maunaloa/history/historytable.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 24, 2013|date=September 17, 2004|archive-date=August 13, 2007|archive-url=https://web.archive.org/web/20070813100729/http://hvo.wr.usgs.gov/maunaloa/history/historytable.html|url-status=dead}}</ref> Possible eruptions occurred around 1730 and 1750 and sometime during 1780<!-- according to a travel guide on the Wilkes expedition - see the SOEST eruptive history reference --> and 1803.<ref>{{cite gvp|title=Mauna Loa: Eruptive History|vn=332020|vtab=Eruptions|access-date=January 24, 2013}}</ref> A June 1832 eruption was witnessed by a missionary on ], but the {{convert|190|km|mi|0|abbr=on}} between the two islands and lack of apparent geological evidence have cast this testimony in doubt. Thus the first entirely confirmed historically witnessed eruption was a January 1843 event; since that time Mauna Loa has erupted 32 times.<ref name=hvo-erupthist />
The summit was actually only a total of {{convert|20|mi|km}} from the coast.<ref name="earliest">{{cite journal| title=Earliest Ascents of Mauna Loa Volcano, Hawai'i |publisher=Hawaiian Historical Society, Honolulu |author=Walther M. Barnard |url= http://hdl.handle.net/10524/599 |journal=Hawaiian Journal of History |volume=25 |year=1991 |accessdate=2009-07-05}}</ref>


Historical eruptions at Mauna Loa are typically ] in character and rarely violent, starting with the emergence of ]s over a several kilometer long ] colloquially known as the "curtain of fire" (often, but not always, propagating from Mauna Loa's summit<ref name=science-stress>{{cite journal|title=Stress Control of Deep Rift Intrusion at Mauna Loa Volcano, Hawaii|journal=]|date=May 18, 2007|volume=316|issue=5827|pages=1026–30|doi =10.1126/science.1140035|first1=F.|last1=Amelung|first2 =S.H.|last2=Yun|first3 =T.R.|last3 =Walter|first4 =P.|last4 =Segall|first5 =S.W.|last5 =Kim|publisher=]|bibcode = 2007Sci...316.1026A |pmid=17510364|s2cid=39726145}}</ref>) and eventually concentrating at a single vent, its long-term eruptive center.<ref name=nps-loa/><ref name=ajs-1980 /> Activity centered on its summit is usually followed by flank eruptions up to a few months later,<ref name=hvo-hist-loa /> and although Mauna Loa is historically less active than that of its neighbor Kilauea, it tends to produce greater volumes of lava over shorter periods of time.<ref name=usgs-hazard/> Most eruptions are centered at either the summit or either of its two major ]s; within the last two hundred years, 38 percent of eruptions occurred at the summit, 31 percent at the northeast rift zone, 25 percent at the southwest rift zone, and the remaining 6 percent from northwest vents.<ref name=soest-erupt>{{cite web|title=Mauna Loa Eruption History|url=http://www.soest.hawaii.edu/GG/HCV/mloa-eruptions.html|publisher=]|access-date=December 12, 2012|author1=Rubin, Ken|author2=Minicola, Rochelle|date=March 7, 2007}}</ref> 40 percent of the volcano's surface consists of lavas less than a thousand years old,<ref name=usgs-hazard>{{cite web|title=Lava Flow Hazard Zone Maps: Mauna Loa|url=http://pubs.usgs.gov/gip/hazards/mauna-loa.html|publisher=United States Geological Survey|access-date=December 12, 2012|author=John Watson|date=July 18, 1997|url-status=dead|archive-url=https://web.archive.org/web/20130115203408/http://pubs.usgs.gov/gip/hazards/mauna-loa.html|archive-date=January 15, 2013}}</ref> and 98 percent of lavas less than 10,000 years old.<ref name=hvo-erupt>{{cite web|title=Eruption History|url=http://hvo.wr.usgs.gov/maunaloa/history/main.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=December 16, 2012|date=February 2, 2006|archive-date=August 19, 2007|archive-url=https://web.archive.org/web/20070819083329/http://hvo.wr.usgs.gov/maunaloa/history/main.html|url-status=dead}}</ref> In addition to the summit and rift zones, Mauna Loa's northwestern flank has also been the source of three historical eruptions.<ref name=usgs-hazard/>
===Archibald Menzies===
] led a party from the ] in the first successful ascent to Moku{{okina}}āweoweo with a written record. He also first tried a direct route from the west and turned back in February 1793. After arriving again the next year, he climbed to the summit of ], on the northwest part of the island. He then tried to cross the interior plateau to Mauna Loa, but had to turn back. He consulted King ] and was astonished to learn he could take canoes to the south and follow the route established by ]ans known as the {{okina}}Ainapō Trail.<ref name="earliest"/>


The 1843 event was followed by eruptions in 1849, 1851, 1852, and 1855,<ref name=hvo-erupthist /> with the 1855 flows being particularly extensive.<ref name=soest-erupt /> 1859 marked the largest of the three historical flows that have been centered on Mauna Loa's northwestern flank, producing a long lava flow that reached the ocean on Hawaii island's west coast, north of ].<ref name=usgs-hazard/> An eruption in 1868 occurred alongside the enormous ],<ref name=soest-erupt /> a ] eight event that claimed 77 lives and remains the largest earthquake ever to hit the island.<ref>{{cite web|title=The Great Ka'u Earthquake of 1868|url=http://hvo.wr.usgs.gov/volcanowatch/archive/1994/94_04_01.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 24, 2013|date=March 26, 1998}}</ref> Following further activity in 1871, Mauna Loa experienced nearly continuous activity from August 1872 through 1877, a long-lasting and voluminous eruption lasting approximately 1,200 days and never moving beyond its summit.<ref name=hvo-erupthist /><ref>{{cite web|title=Eruptions of Hawaiian Volcanoes|url=http://pubs.usgs.gov/gip/hawaii/page15.html|publisher=United States Geological Survey|access-date=January 24, 2013|date=January 5, 1997}}</ref><ref name=hvo-1950>{{cite web|title=50th Anniversary of Mauna Loa's Most Spectacular Eruption|url=http://hvo.wr.usgs.gov/maunaloa/history/50_06_01/|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 24, 2013|date=September 17, 2004|archive-date=January 30, 2013|archive-url=https://web.archive.org/web/20130130173304/http://hvo.wr.usgs.gov/maunaloa/history/50_06_01/|url-status=dead}}</ref> A short single-day eruption in 1877 was unusual in that it took place underwater, in ], and within a mile of the shoreline; curious onlookers approaching the area in boats reported unusually turbulent water and occasional floating blocks of hardened lava.<ref name=usgs-hazard/> Further eruptions occurred in 1879 and then twice in 1880,<ref name=hvo-erupthist /> the latter of which extended into 1881 and came within the present boundaries of the island's largest city, ]; however, at the time, the settlement was a shore-side village located further down the volcano's slope, and so was unaffected.<ref name=soest-erupt /><ref name=usgs-hazard/><ref>{{Cite book|url=https://books.google.com/books?id=YIE9AQAAIAAJ&q=carbonic+oxide|title=Scientific American|date=August 13, 1881|publisher=Munn & Company|pages=106|language=en}}</ref>
On his third attempt on February 16, Menzies reached the summit and used a barometer to estimate the height as {{convert|13634|ft}} compared to its currently known height of {{convert|13679|ft}}.<ref name=menzies>{{cite book
|url=http://books.google.com/?id=11zisSCCOKEC|title=Hawaii Nei 128 Years Ago: Journal of Archibald Menzies, kept during his three visits to the Sandwich or Hawaiian Islands in the years 1792-1794 |author=Archibald Menzies |editor=William Frederick Wilson |year=1920 |accessdate=2009-07-04 |page=197
|publisher=s.n.}}</ref> He was surprised to find heavy snow and morning temperatures of {{convert|26|F}}. He again underestimated the length of the climb and exhausted food rations, arriving with only three coconuts left for the summit party. The sheer mass of Mauna Loa is deceptive. Slopes are generally not very steep (always less than 12°<ref name="npsbrochure"/>) which makes it very hard to judge progress on the trail.


<imagemap>
===Others===
File:Hawaii Volcanoes Hazard Map.svg|thumb|right|275px|Clickable imagemap of the United States Geological Survey ] for Hawaii island; the lowest numbers correspond with the highest hazard levels.
On January 29, 1834, 40&nbsp;years later, another European, ], reached the summit, also using the {{okina}}Ainapō Trail.<ref name="menzies"/>


poly 25 186 49 180 73 150 54 108 36 100 24 104 5 123 3 137 22 164 ]
It is sometimes reported that missionary Joseph Goodrich reached the summit around this time, but he never claimed this himself. He climbed Mauna Kea, and described the sight of Moku{{okina}}āweoweo from Mauna Kea through a telescope.
poly 54 64 99 63 113 40 78 23 74 12 46 5 37 21 41 44 ]
poly 247 157 236 157 203 198 172 202 149 230 128 277 173 250 193 248 249 226 287 186 259 173 ]
poly 56 65 99 64 116 38 188 66 224 103 221 134 194 140 139 143 93 123 60 92 53 79 ]


desc bottom-left
Isidor Löwenstern successfully climbed Mauna Loa in February 1839, only the third successful climb in 60&nbsp;years.<ref name="earliest"/>
</imagemap>


Mauna Loa continued its activity, and of the eruptions that occurred in 1887, 1892, 1896, 1899, 1903 (twice), 1907, 1914, 1916, 1919, and 1926,<ref name=hvo-erupthist /> three (in 1887, 1919, and 1926) were partially ].<ref name=soest-erupt /> The 1926 eruption in particular is noteworthy for having inundated a village near Ho{{okina}}ōpūloa, destroying 12 houses, a church, and a small harbor.<ref name="hvo-1926">{{cite web|title=The Mauna Loa Eruption of 1926|url=http://hvo.wr.usgs.gov/volcanowatch/archive/1995/95_04_07.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 26, 2013|date=March 26, 1998}}</ref> After an event in 1933, Mauna Loa's 1935 eruption caused a public crisis when its flows started to head towards Hilo.<ref name=hvo-erupthist /> A bombing operation was decided upon to try and divert the flows, planned out by then-] ]. The bombing, conducted on December 27, was declared a success by ], director of the Hawaiian Volcano Observatory, and lava stopped flowing by January 2, 1936. However, the role the bombing played in ending the eruption has since been heavily disputed by volcanologists.<ref>{{cite web|title=Lava diversion in Hawai'i?|url=http://hvo.wr.usgs.gov/volcanowatch/archive/1997/97_11_28.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 24, 2013}}</ref> A longer but summit-bound event in 1940 was comparatively less interesting.<ref name=hvo-erupthist />
===Wilkes expedition===
{{Infobox_nrhp | name =Wilkes Campsite
| nrhp_type =
| image = Wilkes campsite.jpg
| caption = Sketch by ship's artist ]
| nearest_city= ]
| lat_degrees = 19
| lat_minutes = 27
| lat_seconds = 59
| lat_direction = N
| long_degrees = 155
| long_minutes = 34
| long_seconds = 54
| long_direction = W
| coord_display = inline
| locmapin = Hawaii
| area = {{convert|4|acre|m2}}
| built =1840
| architect= ]
| architecture= Stone shelter
| added = July 24, 1974
| governing_body = ]
| refnum=74000295<ref name="nris">{{NRISref|2009a}}</ref>
}}
The ] led by Lieutenant ] was tasked with a vast survey of the Pacific Ocean starting in 1838.<ref>{{cite book| title=Narrative of the United States Exploring Expedition |author=Charles Wilkes |year=1849 |volume=Volume IV |page=Pages 111–162| url=http://books.google.com/?id=lbMNAAAAQAAJ| publisher=G. P. Putnam}}</ref> In September 1840 they arrived in ], where repairs to the ships took longer than expected. He decided to spend the winter in Hawaii and take the opportunity to explore its volcanoes while waiting for better weather to continue the expedition. King ] assigned American medical missionary Dr. ] to the expedition as translator.<ref name="measuring"/>


Mauna Loa's 1942 eruption occurred only four months after the ] and the United States' entry into ], and created a unique problem for the wartime United States. Occurring during an enforced nighttime ] on the island, the eruption's luminosity forced the government to issue a ] on the local press, hoping to prevent news of its occurrence spreading, for fear that the Japanese would use it to launch a bombing run on the island. However, as flows from the eruption rapidly spread down the volcano's flank and threatened the ʻOlaʻa ], ]'s primary ], the ] decided to drop its own bombs on the island in the hopes of redirecting the flows away from the flume; sixteen bombs weighing between {{convert|300|and|600|lb|kg|0|abbr=on}} each were dropped on the island, but produced little effect. Eventually, the eruption ceased on its own.<ref>{{cite web|title=Shhh! Don't tell there is an eruption – Eruption of 1942|url=https://volcanoes.usgs.gov/observatories/hvo/hvo_volcano_watch.html?vwid=970|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 24, 2013|date=April 27, 1998}}</ref>
Wilkes sailed to ] on the ] and decided to climb Mauna Loa first, since it looked easier than ]. On December 14 he hired about 200 porters, but after he left he realized only about half the equipment had been taken, so had to hire more Hawaiians at higher pay. When they reached Kīlauea after two days, their guide Puhano headed off to the established {{okina}}Ainapō Trail. Wilkes did not want to head back downhill so he blazed his own way through dense forest directed by a compass. The Hawaiians were offended by the waste of sacred trees, which did not help morale. At about {{convert|6000|ft|m}} elevation they established a camp called "Sunday Station" at the edge of the forest.


Following a 1949 event, the next major eruption at Mauna Loa occurred in 1950. Originating from the volcano's southwestern rift zone, the eruption remains the largest rift event in the volcano's modern history, lasting 23 days, emitting 376&nbsp;million cubic meters of lava, and reaching the {{convert|24|km|mi|0|abbr=on}} distant ocean within 3 hours. The 1950 eruption was not the most voluminous eruption on the volcano (the long-lived 1872–1877 event produced more than twice as much material), but it was easily one of the fastest-acting, producing the same amount of lava as the 1859 eruption in a tenth of the time.<ref name=hvo-1950/> Flows overtook the village of Hoʻokena-mauka in ], crossed ], and reached the sea within four hours of eruption. Although there was no loss of life, the village was permanently destroyed.<ref>{{cite web|title=The 1950 eruption of Mauna Loa: a nightmare that could reoccur|url=https://www.usgs.gov/center-news/volcano-watch-1950-eruption-mauna-loa-a-nightmare-could-reoccur|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=February 2, 2021|date=May 14, 2001}}</ref> After the 1950 event, Mauna Loa entered an extended period of dormancy, interrupted only by a ]. However, it rumbled to life again in 1984, manifesting first at Mauna Loa's summit, and then producing a narrow, channelized ] flow that advanced downslope within {{convert|6|km|mi|0|abbr=on}} of Hilo, close enough to illuminate the city at nighttime. However, the flow got no closer, as two natural levees further up its pathway consequently broke and diverted active flows.<ref>{{cite web|title=The Mauna Loa Eruption of 1984|url=http://hvo.wr.usgs.gov/volcanowatch/archive/1994/94_03_25.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 24, 2013|date=March 26, 1998}}</ref><ref>{{cite web|title=1984 Eruption: March 25 – April 15|url=http://hvo.wr.usgs.gov/maunaloa/history/1984.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|date=September 17, 2004|access-date=January 24, 2013|archive-date=January 31, 2013|archive-url=https://web.archive.org/web/20130131132038/http://hvo.wr.usgs.gov/maunaloa/history/1984.html|url-status=dead}}</ref>
Two guides joined them at Sunday Station: Keaweehu, "the bird-catcher" and another whose Hawaiian name is not recorded, called "ragsdale". Although Wilkes thought he was almost to the summit, the guides knew they were less than half way up. Since there was no water at Sunday Station, porters had to be sent back ten miles (16&nbsp;km) to a ] on {{okina}}Ainapō Trail which had a known supply. After an entire day replenishing stocks, they continued up to a second camp they called "Recruiting Station" at about {{convert|9000|ft|m}} elevation. After another full day's hike they established "Flag Station" on December 22, and by this time were on the {{okina}}Ainapō Trail. Most of the porters were sent back down to get another load.


From 1985 to 2022, the volcano had its longest period of quiet in recorded history.<ref name=hvo-erupthist/><ref name="npsbrochure">{{cite web |author-link1=Gordon A. Macdonald |author1=Gordon A. Macdonald |author2=Douglass H. Hubbard |title=Volcanoes of the National Parks of Hawaii |url=http://www.nps.gov/history/history/online_books/hawaii-notes/vol4-2-7d.htm |publisher=] |date=March 24, 2006 |access-date=January 24, 2013}}</ref> Magma had been accumulating beneath Mauna Loa since the 1984 eruption, and the U.S. Geological Survey in February 2021 reported that although an eruption "did not appear to be imminent," the volcano had shown elevated signs of unrest since 2019, including a slight increase in the rate of inflation at the volcano's summit.<ref>{{cite web |title=Volcano Watch — When will Mauna Loa erupt next? |url=https://www.usgs.gov/observatories/hvo/news/volcano-watch-when-will-mauna-loa-erupt-next |website=U.S. Geological Survey |date=February 25, 2021}}</ref>
At the Flag Station Wilkes and his eight remaining men built a circular wall of lava rocks and covered the shelter with a canvas tent. A snowstorm was in progress and several suffered from ]. That night (December 23), the snow on the canvas roof caused it to collapse. At daylight some of the group went down the trail to retrieve firewood and the gear abandoned on the trail the day before. After another day's climb, nine men reached the rim of Moku{{okina}}āweoweo. They could not find a way down its steep sides so chose a smooth place on the rim for the camp site, at coordinates {{coord|19|27|59|N|155|34|54|W| type:landmark_region:US-HI| display=inline}}. Their tent was pitched within {{convert|60|ft|m}} of the crater's edge, secured by lava blocks.<ref name="focus">{{cite web| author=Russell A. Apple
|url=http://pdfhost.focus.nps.gov/docs/NRHP/Text/74000295.pdf | title=Wilkes Campsite Nomination form | work=National Register of Historic Places | publisher=National Park Service |year=1973 }}</ref>


The quiet period ended at 11:30&nbsp;pm ] on November 27, 2022, when ] began at the volcano's summit in Moku‘āweoweo (Mauna Loa's caldera).<ref name=hvo-loa-2022/> Lava flows emanating from the caldera became visible from ] in the hours immediately following the eruption. The eruption remained confined to the caldera until approximately 6:30&nbsp;am HST on November 28, when the Hawaiian Volcano Observatory observed that the eruption had migrated from the summit to the Northeast Rift Zone.<ref>{{Cite web |title=HAWAIIAN VOLCANO OBSERVATORY VOLCANO OBSERVATORY NOTICE FOR AVIATION Monday, November 28, 2022, 17:20 UTC USGS Hazard Notification System (HANS) for Volcanoes |url=https://volcanoes.usgs.gov/hans2/view/notice/DOI-USGS-HVO-2022-11-28T09:00:26-08:00 |access-date=2022-11-29 |website=volcanoes.usgs.gov}}</ref> Three fissures were initially observed in the rift zone, with the first two becoming inactive by 1:30 PM on the 28th. Before becoming inactive, the two upper fissures fed lava flows that moved downslope, however those flows stalled approximately {{convert|11|mi|km}} from ]. ] were also observed emanating from the fissures, with the tallest reaching up to {{convert|200|ft|m}} into the air.<ref>{{Cite web |title=HAWAIIAN VOLCANO OBSERVATORY STATUS REPORT Tuesday, November 29, 2022, 02:55 UTC USGS Hazard Notification System (HANS) for Volcanoes |url=https://volcanoes.usgs.gov/hans2/view/notice/DOI-USGS-HVO-2022-11-28T18:29:33-08:00 |access-date=2022-11-30 |website=volcanoes.usgs.gov}}</ref> As lava flows from the third fissure expanded, they cut off the road to the ] at approximately 8&nbsp;pm on the 28th. Activity in the rift zone continued on the 29th, with a fourth fissure that opened at approximately 7:30&nbsp;pm on the 28th joining the third in releasing lava flows. The main front of the third fissure's lava flows also continued to move, and was located approximately {{convert|2.7|mi|km}} from Saddle Road at 7&nbsp;am on December 2.
The next morning they were unable to start a fire using friction due to the thin air at that altitude, and sent for matches. By this time, the naval officers and Hawaiians could not agree on terms to continue hiring porters, so sailors and marines were ordered from the ships. Dr. Judd traveled between the summit and the Recruiting Station to tend the many who suffered from altitude sickness or had worn out their shoes on the rough rock. Christmas Day was spent building rock walls around the camp to give some protection from the high winds and blowing snow. It took another week to bring all the equipment to the summit, including a ] designed for measuring slight variations in gravity.<ref name="focus"/>
]


As the eruption approached its second week, indications of a reduction in activity began to appear. On December 8, the lava flows feeding the main front began to drain, and the main flow front stalled approximately {{convert|1.7|mi|km}} from Saddle Road. The flows continued to drain on the 9th, and the third fissure's lava fountains also began to grow shorter. On the 10th, the lava fountains were replaced by a lava pond, and the stalled flow front was declared to no longer be a threat. Based on these factors and data on past eruptions, the HVO determined that the eruption may end soon and reduced the ] from Warning to Watch at 2:35&nbsp;pm on the 10th. However, there was a small possibility that the eruption would continue at a very low rate.<ref>{{Cite web |title=HAWAIIAN VOLCANO OBSERVATORY VOLCANO ACTIVITY NOTIFICATION Sunday, December 11, 2022, 00:35 UTC USGS Hazard Notification System (HANS) for Volcanoes |url=https://volcanoes.usgs.gov/hans2/view/notice/DOI-USGS-HVO-2022-12-10T16:24:56-08:00 |access-date=2022-12-11 |website=volcanoes.usgs.gov}}</ref> The eruption officially ended at 7:17&nbsp;am on the 13th, and the HVO lowered the volcano alert level to Advisory.<ref>{{Cite web |title=HAWAIIAN VOLCANO OBSERVATORY VOLCANO OBSERVATORY NOTICE FOR AVIATION Tuesday, December 13, 2022, 17:17 UTC USGS Hazard Notification System (HANS) for Volcanoes |url=https://volcanoes.usgs.gov/hans2/view/notice/DOI-USGS-HVO-2022-12-13T08:57:10-08:00 |access-date=2022-12-16 |website=volcanoes.usgs.gov}}</ref>
On December 31, 1840 the pre-fabricated pendulum house was assembled. Axes and chisels cut away the rock surface for the pendulum's base. It took another three days to adjust the clock to the point where the experiments could begin. However, the high winds made so much noise that the ticks could often not be heard, and varied the temperature to make measurements inaccurate. Grass had to be painstakingly brought from the lowest elevations for insulation to get accurate measurements.


===Hazards===
On Monday, January 11, Wilkes hiked around the summit crater. Using an optical method, he estimated Mauna Kea was only {{convert|193|ft|m}} higher (modern measurements are {{convert|104|ft|m}} feet).
Mauna Loa has been designated a ], one of the sixteen volcanoes identified by the ] (IAVCEI) as being worthy of particular study in light of their history of large, destructive eruptions and proximity to populated areas.<ref>{{cite web|url=http://vulcan.wr.usgs.gov/Volcanoes/DecadeVolcanoes/|title=Decade Volcanoes|work=]|author=International Association of Volcanology and Chemistry of the Earth's Interior|publisher=United States Geological Survey|year=1998|access-date=January 25, 2013|author-link=International Association of Volcanology and Chemistry of the Earth's Interior}}</ref><ref>{{cite web|title=Decade Volcano Program IDNDR – IAVCEI – 1990/2000|url=http://www.sveurop.org/gb/program/program.htm|publisher=Société Volcanologique Européenne|author=Nick Varley|access-date=January 25, 2013}}</ref> The United States Geological Survey maintains a ] of the island done on a one to nine scale, with the most dangerous areas corresponding the smallest numbers. Based on this classification Mauna Loa's continuously active summit caldera and rift zones have been given a level one designation. Much of the area immediately surrounding the rift zones is considered level two, and about 20 percent of the area has been covered in lava in historical times. Much of the remainder of the volcano is hazard level three, about 15 to 20 percent of which has been covered by flows within the last 750 years. However, two sections of the volcano, the first in the ] area and the second on the southeastern flank of Mauna Loa's rift zone, are protected from eruptive activity by local topography, and have thus been designated hazard level 6, comparable with a similarly isolated segment on ].<ref name="usgs-hazard" />
On January 13, 1841, he had "Pendulum Peak, January 1841 U.S. Ex, Ex." cut into a rock at the site.
The tents were dismantled and Hawaiians carried the gear down over the next three days, while Wilkes enjoyed a ] Hawaiian massage. He continued his measurements at lower elevations and left the island on March 5. For all the effort he did not obtain any significant results, attributing gravity discrepancies to "the tides".<ref name="measuring"/>


Although volcanic eruptions in Hawaiʻi rarely produce casualties (the only direct historical fatality due to volcanic activity on the island occurred at Kīlauea in 1924, when an unusually explosive eruption hurled rocks at an onlooker), property damage due to inundation by lava is a common and costly hazard.<ref name="usgs-hazard_all">{{cite web | author = John Watson | title = Volcanic and seismic hazards on the island of Hawaii | publisher = United States Geological Survey | url = http://pubs.usgs.gov/gip/hazards/hazards.html | date = July 18, 1997 | access-date = January 25, 2013 | archive-date = January 15, 2013 | archive-url = https://web.archive.org/web/20130115203420/http://pubs.usgs.gov/gip/hazards/hazards.html | url-status = dead}}</ref> ]-type eruptions usually produce extremely slow-moving flows that advance at walking pace, presenting little danger to human life, but this is not strictly the case;<ref>{{cite web|title=How Volcanoes Work: Hawaiian Eruptions|url=http://www.geology.sdsu.edu/how_volcanoes_work/Hawaiian.html|publisher=]|access-date=January 25, 2013}}</ref> Mauna Loa's 1950 eruption emitted as much lava in three weeks as Kīlauea's ] produced in three years and reached sea level within four hours of its start, overrunning the village of Hoʻokena Mauka and a major highway on the way there.<ref name=hvo-1950 /> An earlier eruption in 1926 overran the village of Hoʻōpūloa Makai,<ref name="hvo-1926" /> and ], partly built on lavas from the 1880–81 eruption, is at risk from future eruptions.<ref name=usgs-hazard/> The 1984 eruption nearly reached the city, but stopped short after the flow was redirected by upstream topography.<ref name="usgs-loa_hazards">{{cite web | url = http://hvo.wr.usgs.gov/maunaloa/hazards/main.html | title = Lava flow hazards on Mauna Loa volcano | publisher = Hawaiian Volcano Observatory – United States Geological Survey | date = February 2, 2006 | access-date = January 25, 2013}}</ref>
The Wilkes expedition's camp site's ruins are the only known physical evidence in the Pacific of the U. S. Exploring Expedition.<ref name="focus"/> The camp site was listed on the ] on July 24, 1974 as site 74000295,<ref name="nris"/> and is state historic site 10-52-5507.<ref> on official state web site</ref>


A potentially greater hazard at Mauna Loa is a sudden, massive collapse of the volcano's flanks, like the one that struck the volcano's west flank between 100,000 and 200,000 years ago and formed the present-day ].<ref name=uh-landslides/> Deep ] are a common feature on Hawaiian volcanoes, allowing large portions of their flanks to gradually slide downwards and forming structures like the ] and the ancient ]; large earthquakes could trigger rapid flank collapses along these lines, creating massive ] and possibly triggering equally large ]s. Undersea surveys have revealed numerous landslides along the Hawaiian chain and evidence of two such giant tsunami events: 200,000&nbsp;years ago, ] experienced a {{convert|75|m|ft|0|abbr=on}} tsunami, and 100,000&nbsp;years ago a ] {{convert|325|m|ft|0|abbr=on}} high struck ].<ref name="Decker">{{Cite book|author=Robert and Barbara Decker|title=Volcanoes|url=https://archive.org/details/volcanoes00deck_0|url-access=registration|year=1997|publisher=W.H. Freeman & Co, Ltd|location=New York|isbn=978-0-7167-3174-0|edition=3rd}}</ref> A more recent example of the risks associated with slumps occurred in ], when the Hilina Slump suddenly lurched forward several meters, triggering a 7.2 {{M|w}} earthquake and a {{convert|14|m|abbr=on}} tsunami that killed two campers at Halape.<ref>{{cite journal|title=Shallow Normal Faulting and Block Rotation Associated with the 1975 Kalapana Earthquake, Kilauea'|journal=]|year=2001|volume=91|issue=6|page=1553|doi=10.1785/0120000072|author1=Cannon, Eric C.|author2=Bürgmann, Roland|author3=Owen, Susan E.|publisher=]|bibcode = 2001BuSSA..91.1553C}}</ref>
===Today===
A summit shelter was built with some of the stones from Wilkes' camp site and mortar in 1934. In 1916 Moku{{okina}}āweoweo was included in ], and a new trail was built directly from park headquarters at Kīlauea, an even more direct route than the one taken by Wilkes.<ref name="nrhpinv2"/> This trail, arriving at the summit from the east via Red Hill, became the preferred route due to its easier access and gentler slope. After falling into disuse, the historic ] was reopened in the 1990s. A third modern route to the summit is from the ], up to the ] which is located at the elevation of {{convert|11135|ft|m}} a few miles north of Moku{{okina}}āweoweo, and the North Pit trail.<ref>{{cite web| url=http://www.mlo.noaa.gov |title=NOAA Mauna Loa Observatory |publisher=] web site |accessdate=2009-07-04 }}</ref>


===Monitoring===
==Historic eruptions==
{{multiple image
])]]
| align = right
Although ]ans had witnessed eruptions for many centuries, written records exist only for eruptions that have occurred since the early 19th century. The first historical eruption occurred in 1832, and since then 32 eruptions have been documented.
| direction = horizontal
| image1 = Mauna Loa Summit Monitoring.jpg
| width1 = 205
| caption1 = ] stations, ]s, and ]s on Mauna Loa's summit. Not shown: a ] and a ] positioned on the caldera rim.
| image2 = Mauna Loa Summit Inflation.jpg
| width2 = 225
| caption2 = Summit inflation as measured via ] between June 2004 and April 2005; arrows denote between {{convert|1|and|10|cm|in|1|abbr=on}} of growth.
}}


Established on Kīlauea in 1912, the Hawaiian Volcano Observatory (HVO), presently a branch of the United States Geological Survey, is the primary organization associated with the monitoring, observance, and study of Hawaiian volcanoes.<ref name=hvo-hist-intro>{{cite web|title=Thomas A. Jaggar, Jr., and the Hawaiian Volcano Observatory|url=http://hvo.wr.usgs.gov/observatory/hvo_history.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 26, 2013|author=Russell A. Apple|date=January 4, 2005|archive-date=June 14, 2009|archive-url=https://web.archive.org/web/20090614054515/http://hvo.wr.usgs.gov/observatory/hvo_history.html|url-status=dead}}</ref> ], the Observatory's founder, attempted a summit expedition to Mauna Loa to observe its 1914 eruption, but was rebuffed by the arduous trek required (see ]). After soliciting help from ], in 1915 he was able to persuade the ] to construct a "simple route to the summit" for public and scientific use, a project completed in December of that year; the Observatory has maintained a presence on the volcano ever since.<ref name=hvo-hist-loa>{{cite web|title=Mauna Loa|url=http://hvo.wr.usgs.gov/observatory/hvo_history_mloa.html|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 26, 2013|author=Russell A. Apple}}</ref>
The typical pattern is for an eruption to start at Moku{{okina}}āweoweo, then move to a focal vent lower on one of the rift zones. Often, a major rift eruption is preceded by a smaller event that is limited to Moku{{okina}}āweoweo, a year or more before the larger one. The latter occurred in 1880, 1940, and 1949, before the massive flank eruptions of 1881, 1942, and 1950. In total, these eruptions have covered over {{convert|310|sqmi|km2|-1}} of the volcano's flanks with lava flows. Typically, eruptions have been brief but intense, with 0.06 to 0.12&nbsp;cubic miles (0.25–0.5&nbsp;km³) of lava erupted over a few weeks.<ref name="USGSlist"> from the ]</ref>


Eruptions on Mauna Loa are almost always preceded and accompanied by prolonged episodes of seismic activity, the monitoring of which was the primary and often only warning mechanism in the past and which remains viable today. ] have been maintained on Hawaiʻi since the Observatory's inception, but these were concentrated primarily on Kīlauea, with coverage on Mauna Loa improving only slowly through the 20th century.<ref name=hvo-seismic>{{cite web|title=HVO Seismic Network|url=http://hvo.wr.usgs.gov/earthquakes/history/|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 26, 2013|date=June 18, 2001}}</ref> Following the invention of modern monitoring equipment, the backbone of the present-day monitoring system was installed on the volcano in the 1970s. Mauna Loa's July 1975 eruption was forewarned by more than a year of seismic unrest, with the HVO issuing warnings to the general public from late 1974; the 1984 eruption was similarly preceded by as much as three years of unusually high seismic activity, with ]s predicting an eruption within two years in 1983.<ref name=hov-monitoring_data>{{cite web|title=Long-term Monitoring Data|url=http://hvo.wr.usgs.gov/maunaloa/current/monitoringdata.php|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 26, 2013|archive-date=February 17, 2013|archive-url=https://web.archive.org/web/20130217012832/http://hvo.wr.usgs.gov/maunaloa/current/monitoringdata.php|url-status=dead}}</ref>
The most prominent historic eruptions of Mauna Loa, with extensive lava flows in forest and agricultural areas, were in 1855, 1881, 1935, 1942, and 1950 on the northeast rift zone; 1887, 1907, 1916, 1919, 1926, and 1950 on the southwest rift zone; and the 1859 radial vent eruption.<ref name="USGSlist"/>


The modern monitoring system on Mauna Loa consists not only of its local seismic network but also of a large number of ] stations, ]s, and ]s that have been anchored on the volcano to monitor ] due to swelling of Mauna Loa's subterranean ], which presents a more complete picture of the events proceeding eruptive activity. The GPS network is the most durable and wide-ranging of the three systems, while the tiltmeters provide the most sensitive predictive data, but are prone to erroneous results unrelated to actual ground deformation; nonetheless a survey line across the caldera measured a {{convert|76|mm|in|0|abbr=on}} increase in its width over the year preceding the 1975 eruption, and a similar increase in 1984 eruption. Strainmeters, by contrast, are relatively rare.<ref name=hvo-monitoring_current>{{cite web|title=Mauna Loa Volcano, Hawai'i : Current Monitoring|url=http://hvo.wr.usgs.gov/maunaloa/current/currentmonitoring.php|publisher=Hawaiian Volcano Observatory – United States Geological Survey|access-date=January 26, 2013|archive-date=February 17, 2013|archive-url=https://web.archive.org/web/20130217005623/http://hvo.wr.usgs.gov/maunaloa/current/currentmonitoring.php|url-status=dead}}</ref> The Observatory also maintains two ]s at Mokuʻāweoweo, Mauna Loa's summit caldera, as well as a publicly accessible and occasional screenings by ] imaging.<ref name=hov-monitoring_data/>
An eruption in 1935 that headed toward the city of ] led to an unusual employment of air power. Five bombers of the 23d and 72d Bombardment Squadrons of the United States Air Force dropped bombs in the path of the lava in order to divert it away from Hilo.<ref name="USAF1"> (PDF). 27 Dec 1935 Five Keystone LB-5 bombers of the 23d and 72d Bombardment Squadrons at Luke Field dropped twenty 600-pound bombs in the path of a lava flow from the Mauna Loa volcano on the Big Island.</ref><ref name="USAF2"> history from ] website.</ref><ref>{{cite news| url=http://www.time.com/time/magazine/article/0,9171,763845,00.html | work=Time | title=TERRITORIES: Mauna Loa Erupts | date=April 22, 1940}}</ref> The eruption stopped six days later.<ref name="USGSlist"/


==Human history==
The 1950 eruption produced lava flows along a {{convert|20|km|mi|sp=us}} fissure from Lua Hou to the southwest.<ref name="USGS1950">{{cite web| title=50th Anniversary of Mauna Loa's Most Spectacular Eruption |url=http://hvo.wr.usgs.gov/maunaloa/history/50_06_01 |publisher=USGS Hawaii Volcano Observatory |year=2000 |accessdate=2009-07-04 }}</ref> The first flow extended {{convert|24|km|mi|sp=us}} from the vent at {{convert|2800|m|ft|sp=us}} elevation to the ocean in only three hours during the night, and a second flow before dawn cut off the escape route for people in the village of Ho{{okina}}okena.<ref name="USGS, Hawaiian Volcano Observatory">{{cite web | title = The 1950 eruption of Mauna Loa: a nightmare that could reoccur | publisher = USGS, Hawaiian Volcano Observatory | date = May 10, 2001 | url = http://hvo.wr.usgs.gov/volcanowatch/2001/01_05_10.html | accessdate = 2007-07-28}}</ref> The eruption eventually focused on a flow further to the south, which also reached the ocean.
===Pre-contact===
The first ]s to arrive on Hawaii island lived along the shores where food and water were plentiful.<ref name="nasa-outrigger">{{cite web|title=Final Environmental Statement for the Outrigger Telescopes Project: Volume II|url=http://planetquest.jpl.nasa.gov/Outrigger/finalDocuments/fullDocument/OTP-FEIS-Volume-II.pdf|archive-url=https://web.archive.org/web/20090421000952/http://planetquest.jpl.nasa.gov/Outrigger/finalDocuments/fullDocument/OTP-FEIS-Volume-II.pdf|archive-date=April 21, 2009|publisher=]|access-date=September 4, 2012|page=C–9|url-status=dead|date=February 2005}}</ref> Flightless birds that had previously known no predators became a staple food source.<ref name="haw-culture">{{cite web|title=Culture: The First Arrivals: Native Hawaiian Uses |url=http://www.hawaii.edu/maunakea/5_culture.pdf |work=Mauna Kea Mountain Reserve Master Plan |publisher=] |access-date=September 2, 2012 |url-status=dead |archive-url=https://web.archive.org/web/20121011113028/http://www.hawaii.edu/maunakea/5_culture.pdf |archive-date=October 11, 2012}}</ref> Early settlements had a major impact on the local ecosystem, and caused many extinctions, particularly amongst bird species, as well as introducing foreign plants and animals and increasing erosion rates.<ref name="ps-1982">{{cite journal|last=Kirch|first=Patrick V.|title=The Impact of the Prehistoric Polynesians on the Hawaiian Ecosystem|journal=]|date=January 1982|volume=36|issue=1|pages=1–14|url=http://scholarspace.manoa.hawaii.edu/handle/10125/406|access-date=September 2, 2012|publisher=]|hdl=10125/406}}</ref> The prevailing lowland forest ecosystem was transformed from forest to grassland; some of this change was caused by the use of fire, but the main reason appears to have been the introduction of the ] (''Rattus exulans'').<ref>{{cite journal|last=Athens|first=Stephen|author2=Tuggle, H. David|author3=Ward, Jerome V.|author4=Welch, David J.|year=2002|title=Avifaunal Extinctions, Vegetation Change and Polynesian Impacts in Prehistoric Hawai'i|journal=Archaeology in Oceania|volume=37|url=https://www.questia.com/googleScholar.qst;jsessionid=C6A3E763540A70D4D8429AF57BF5D92C.inst1_1a?docId=5002488775|access-date=September 4, 2012|issue=2|pages=57|doi=10.1002/j.1834-4453.2002.tb00507.x|archive-date=June 5, 2012|archive-url=https://archive.today/20120605041612/http://www.questia.com/googleScholar.qst;jsessionid=C6A3E763540A70D4D8429AF57BF5D92C.inst1_1a?docId=5002488775|url-status=dead}}</ref>


Ancient Hawaiian ] holds that the five volcanic peaks of the island are sacred, and regards Mauna Loa, the largest of them all, with great admiration;<ref>{{cite web|title=Information on the Mauna Loa Volcano in Hawaii|url=http://traveltips.usatoday.com/information-mauna-loa-volcano-hawaii-13725.html|work=]|access-date=January 27, 2013|author=Caitlin Kelly}}</ref> but what mythology survives today consists mainly of oral accounts from the 18th century first compiled in the 19th. Most of these stories agree that the Hawaiian ], ], resides in ] on Kilauea; however a few place her home at Mauna Loa's summit caldera Mokuʻāweoweo, and the mythos in general associates her with all volcanic activity on the island.<ref>{{cite web |author=Ken Hon |author-link=Ken Hon |title=Hawaiian Oral History related to Geology |url=http://www.uhh.hawaii.edu/~kenhon/GEOL205/Legends/default.htm |access-date=January 27, 2013 |publisher=]}}</ref> Regardless, Kīlauea's lack of a geographic outline and strong volcanic link to Mauna Loa led to it being considered an offshoot of Mauna Loa by the Ancient Hawaiians, meaning much of the mythos now associated with Kīlauea was originally directed at Mauna Loa proper as well.<ref name="USGS-dw">{{Cite book|year=1987 |title=Volcanism in Hawaii: papers to commemorate the 75th anniversary of the founding of the Hawaii Volcano Observatory |editor=R. W. Decker |publisher=United States Geological Survey |volume=1 |series=United States Geological Survey Professional Paper, 1350 |url=http://pubs.usgs.gov/pp/1987/1350/pp1350_vol1.pdf |access-date=September 2, 2012 |display-editors=etal |url-status=dead |archive-url=https://web.archive.org/web/20121010062038/http://pubs.usgs.gov/pp/1987/1350/pp1350_vol1.pdf |archive-date=October 10, 2012}}</ref>{{rp|154–155}}
On March 25, 1984 an eruption started: a small summit eruption was followed by a larger flank lava flow that threatened Hilo.<ref>{{cite web| url=http://hvo.wr.usgs.gov/maunaloa/history/1984.html |title=1984 Eruption of Mauna Loa |publisher=USGS Hawaiian Volcano Observatory |accessdate=2009-07-04 |year=1987 }}</ref> Fissures opened to the northwest and southeast, from the summit down to {{convert|9500|ft|m|-1}} above ]. Flows from this eruption headed rapidly towards ] again, but stopped about {{convert|2.5|mi|km|1}} from the outskirts when the eruption ended after three weeks.<ref name="Decker" />


Ancient Hawaiians constructed an extensive trail system on Hawaiʻi island, today known as the ]. The network consisted of short trailheads servicing local areas along the main roads and more extensive networks within and around agricultural centers. The positioning of the trails was practical, connecting living areas to farms and ports, and regions to resources, with a few upland sections reserved for gathering and most lines marked well enough to remain identifiable long after regular use had ended. One of these trails, the ], ascended from the village of Kapāpala over {{convert|3400|m|ft|0|abbr=on}} in about {{convert|56|km|mi|0|abbr=on}} and ended at Mokuʻāweoweo at Mauna Loa's summit. Although the journey was arduous and required several days and many porters, ancient Hawaiians likely made the journey during eruptions to leave offerings and prayers to honor Pele, much as they did at Halemaʻumaʻu, neighboring Kilauea's more active and more easily accessible caldera. Several camps established along the way supplied water and food for travelers.<ref name=nrhpinv2>{{cite web|title=National Register Of Historic Places Inventory – Nomination Form for Federal Properties – Ainapo Trail|url=http://www.pdfhost.focus.nps.gov/docs/NRHP/Text/74000290.pdf|author=Russell A. Apple|publisher=]|access-date=January 27, 2013|date=August 20, 1974|url-status=dead|archive-url=https://web.archive.org/web/20120929071811/http://pdfhost.focus.nps.gov/docs/NRHP/Text/74000290.pdf|archive-date=September 29, 2012}}</ref><ref name=nature-2005>{{cite web|title=The Proposed Mauka Trails System: The Roles and History of Trails on the Big Island|url={{NRHP url|id=74000290}}|publisher=]|access-date=January 27, 2013|author=Rick Warshauer|date=October 2005}}</ref>
As of 2009, Mauna Loa has been inactive for over 25&nbsp;years, its longest quiet period in recorded history.<ref name="npsbrochure">{{cite book| author=Gordon A. Macdonald, Douglass H. Hubbard |title=Volcanoes of the National Parks of Hawaii |url=http://www.nps.gov/history/history/online_books/hawaii-notes/vol4-2-7d.htm |publisher= ] web site |year=Original 1951, revised 1974}}</ref><ref name="USGSlist"/>


=== European summiting attempts ===
===Current activity===
]'s ] was the first to make landfall on Hawaiʻi island, in 1778, and following adventures along the North American west coast, Cook returned to the island in 1779. On his second visit ], a ] of the ] aboard {{HMS|Resolution|1771|6}}, proposed and received approval for an expedition to the summit Mauna Loa to learn "about that part of the island, particularly the peak, the tip of which is generally covered with snow, and had excited great curiosity." Using a compass, Ledyard and small group of ships' mates and native attendants attempted to make a direct course for the summit. However, on the second day of traveling the route became steeper, rougher, and blocked by "impenetrable thickets," and the group was forced to abandon their attempt and return to ], reckoning they had "penetrated 24 miles and we suppose within 11 miles of the peak"; in reality, Mokuʻāweoweo lies only {{convert|32|km|mi|0|abbr=on}} east of the bay, a severe overestimation on Ledyard's part. Another of Cook's men, ] ], estimated the peak to be at least {{convert|5600|m|ft|0|abbr=on}} high based on its ].<ref name="earliest">{{cite journal|url=http://evols.library.manoa.hawaii.edu/bitstream/handle/10524/599/JL25059.pdf?sequence=2|title=Earliest Ascents of Mauna Loa Volcano, Hawai'i |publisher=Hawaiian Historical Society, Honolulu |author=Walther M. Barnard |hdl= 10524/599 |journal=Hawaiian Journal of History|volume=25 |year=1991}}</ref><ref name="measuring">{{cite journal|url=http://evols.library.manoa.hawaii.edu/bitstream/handle/10524/359/JL25077.pdf?sequence=2|title=Measuring the Mountain: the United States Exploring Expedition on Mauna Loa, 1840–1841 |publisher=Hawaiian Historical Society |author=Roberta A. Sprague |hdl=10524/359 |journal=Hawaiian Journal of History |volume=25 |year=1991}}</ref>
]s feed ] ] in March 1984.]]
In 2002 ], which had been low, increased, and inflation suddenly started, and the caldera walls started to move apart at {{convert|2|in|cm|0}} per year. This is thought to indicate that magma is filling a reservoir about {{convert|3.1|mi|km|1}} beneath the summit. The inflation has been intermittent, sometimes slowing, and sometimes stopping for several weeks. Thus far, though, it has always restarted, and this is likely to indicate an increased probability of an eruption in the next few years.


] was the first European to reach the summit of Mauna Loa, on his third attempt.]]
In July 2004 a swarm of deep earthquakes began, and continued until the end of the year. Earthquakes were detected at a rate of one per day for the first three weeks, increasing steadily over subsequent months to 15 or so per day by the end of the year. The swarm ended in December 2004, and earthquake levels have been only moderately elevated since then.<ref>{{cite web | title = Mauna Loa: Summary of monitoring data (1970 – May 2005) | publisher = ], Hawaiian Volcano Observatory |url = http://hvo.wr.usgs.gov/maunaloa/current/longterm.html | date = June 22, 2005 | accessdate = 2007-07-28}}</ref>
The next attempt to summit Mauna Loa was an expedition led by ], a botanist and naturalist on the 1793 ]. In February of that year Menzies, two ships' mates, and a small group of native Hawaiian attendants attempted a direct course for the summit from ], making it {{convert|26|km|mi|0|abbr=on}} inland by their reckoning (an overestimation) before they were turned away by the thickness of the forest. On a second visit by the expedition to the island in January of the next year Menzies was placed in charge of exploring the island interior, and after traversing the flanks of ] he and his party arrived at the high plateau separating the two volcanoes. Menzies decided to make a second attempt (above the objections of the accompanying island chief), but again his progress was arrested by unassailable thickets.<ref name="earliest"/>


Menzies made a third attempt to summit Mauna Loa in February 1794. This time the botanist consulted King ] for advice and learned that he could take canoes to the south and follow the ʻAinapō Trail, not knowing of its existence beforehand. Significantly better prepared, Menzies, Lieutenant ] and Midshipman George McKenzie of ''Discovery'', and a servant (most likely Jonathan Ewins, listed on the ship's muster as "Botanist's L't") reached the summit, which Menzies estimated to be {{convert|4156|m|ft|0|abbr=on}} high with the aid of a ] (consistent with a modern value of {{convert|4169|m|ft|0|abbr=on|disp=comma}}). He was surprised to find heavy snow and morning temperatures of {{convert|-3|C|F|0|abbr=on}}, and was unable to compare the heights of Mauna Loa and Kea but correctly supposed the latter to be taller based on its larger snow cap.<ref name="earliest"/> The feat of summitting Mauna Loa was not to be repeated for forty years.<ref name="earliest"/>
==Relationship with Kīlauea==
]]]
] lies on the southern flank of Mauna Loa and was originally thought to be a satellite vent of Mauna Loa. However, chemical differences between the lavas from the two volcanoes show that they have separate shallow magma chambers. They are now considered separate volcanoes. Nevertheless, activity patterns at the two volcanoes do appear to be correlated.


The Hawaiian Islands were the site of fervent missionary work, with the first group of missionaries arrived at ] in 1820 and the second in 1823. Some of these missionaries left for Hawaiʻi island, and spent ten weeks traveling around it, preaching at local villages and climbing Kilauea, from which one of its members, ], observed Mauna Loa with the aid of a telescope and ascertained it and Kea to be "perhaps 15,000 to 16,000 feet above the level of the sea"; they did not, however, attempt to climb the volcano itself. It is sometimes reported that the missionary Joseph Goodrich reached the summit around this time, but he never claimed this himself, though he did summit Mauna Kea and describe Mokuʻāweoweo with the aid of another telescope.<ref name="measuring"/>
The most apparent relation between the two mountains is that, generally, periods of frequent activity at one volcano coincide with periods of low activity at the other. For example, between 1934 and 1952, Kīlauea was dormant and only Mauna Loa was active, while from 1952 to 1974, only Kīlauea was active while Mauna Loa lay dormant.<ref name="Links">{{cite web | title = Inflation of Mauna Loa Volcano slows | publisher = USGS, Hawaiian Volcano Observatory | date = January 23, 2003 | url = http://hvo.wr.usgs.gov/volcanowatch/2003/03_01_23.html | accessdate = 2007-07-28}}</ref>


The next successful ascent was made on January 29, 1834, by the Scottish botanist ], who also reached the summit caldera using the ʻAinapō Trail. By the time Douglas reached the summit the environment had put him under extreme duress, but he nonetheless stayed overnight to make measurements of the summit caldera's proportions and record barometric data on its height, both now known to be wildly inaccurate. Douglas collected biological samples on the way both up and down, and after a difficult and distressing descent began collating his samples; he planned to return to England, but instead several months later his body was discovered mysteriously crushed in a pit beside a dead wild boar<ref name="measuring"/>
The 1984 eruption of Mauna Loa started during an eruption at Kīlauea, but had no discernible effect on the Kīlauea eruption. Occasionally, though, eruptions at one volcano do seem to influence activity at the other. The recent inflation of Mauna Loa's summit began on the same day as a new large lava flow broke out at Kīlauea's ] crater. Geologists have suggested that a "pulse" of magma entering Mauna Loa's deep plumbing system could have increased pressure inside Kīlauea and triggered the eruption.<ref name="Links" />


Isidor Löwenstern successfully climbed Mauna Loa in February 1839, only the third successful climb in 60&nbsp;years.<ref name="earliest"/>
==Hazards==
Volcanic eruptions in Hawai{{okina}}i rarely cause casualties: the only fatality due to volcanic activity there in the last century occurred at Kīlauea in 1924, when an unusually explosive eruption hurled rocks at onlookers, killing one.<ref>{{cite web | author = Heliker CC | title = Volcanic and seismic hazards on the island of Hawaii | publisher = US Geological Survey General Interest Publication | url = http://pubs.usgs.gov/gip/hazards/hazards.html |date = July 18, 1997 | accessdate = 2007-07-28}}</ref> However, property damage is common. Mauna Loa is a ], which means it has been identified as worthy of particular research in light of its frequent eruptions and proximity to populated areas. Many towns and villages near the volcano are built on lava which has erupted in the last two hundred years, and there is a very strong likelihood that future eruptions will cause damage to populated areas.


===Lava flows=== ===Wilkes expedition===
]]]
] ] overruns vegetation during the 1984 eruption]]
The main volcanic hazard at Mauna Loa is ]s. Most flows advance at about walking pace and present little danger to human life, but eruptions at Mauna Loa can be more intense than those at Kīlauea; for example, the 1984 eruption emitted as much lava in three weeks as Kīlauea's current eruption produces in three years.<ref name="USGS, Hawaiian Volcano Observatory"/> Such high emission rates can generate comparatively fast-moving flows.


The ] led by Lieutenant ] was tasked with a vast survey of the Pacific Ocean starting in 1838.<ref>{{cite book| title=Narrative of the United States Exploring Expedition |author=Charles Wilkes |year=1849 |volume=IV |pages=111–162| url=https://books.google.com/books?id=lbMNAAAAQAAJ| publisher=G. P. Putnam}}</ref> In September 1840 they arrived in ], where repairs to the ships took longer than expected. Wilkes decided to spend the winter in Hawaii and take the opportunity to explore its volcanoes while waiting for better weather to continue the expedition. King ] assigned American medical missionary Dr. ] to the expedition as a translator.<ref name="measuring"/>
Two eruptions of Mauna Loa have destroyed villages. In 1926, the village of Ho{{okina}}ōpūloa Makai was overrun by lava flows. In 1950, the most voluminous eruption ever seen at Mauna Loa sent lava flows racing towards the sea. The village of Ho{{okina}}okena Mauka was destroyed on June 2, 1950 by the advancing flows.<ref>Finch R.H., Macdonald G.A. (1950), ''The June 1950 eruption of Mauna Loa, Part I'', Volcano Letter, v.508, p12</ref> Hilo is partly built on lava from the 1880-81 eruption and is at risk from further lava flows. The brief but intense 1984 eruption saw lava flow towards Hilo, but it had not reached any buildings when the eruption stopped.<ref>{{cite web | url = http://hvo.wr.usgs.gov/maunaloa/hazards/main.html | title = Lava flow hazards on Mauna Loa volcano | publisher = USGS, Hawaiian Volcano Observatory | date = February 2, 2006 | accessdate = 2007-07-28}}</ref>


Wilkes sailed to ] on the ] and decided to climb Mauna Loa first, since it looked easier than ]. On December 14 he hired about 200 porters, but after he left he realized only about half the equipment had been taken, so he had to hire more Hawaiians at higher pay. When they reached Kīlauea after two days, their guide Puhano headed off to the established ʻAinapō Trail. Wilkes did not want to head back downhill so he blazed his own way through dense forest directed by a compass. The Hawaiians were offended by the waste of sacred trees which did not help morale. At about {{convert|6000|ft|m}} elevation they established a camp called "Sunday Station" at the edge of the forest.
===Flank collapse===
A rarer but potentially greater hazard at Mauna Loa is the possibility of a sudden massive collapse of the volcano's flanks. Deep ] allow large portions of the sides of Hawaiian mountains to slide gradually downwards, the best known example being the ]. (There is also the more ancient example of the ].) Occasionally, a large earthquake can trigger a collapse of the flank, creating a massive ] which may trigger a ]. ], on the western slope of Mauna Loa, was created by such an event. Undersea surveying has revealed numerous landslides along the Hawaiian chain and two giant tsunamis are known to have occurred: 200,000&nbsp;years ago, ] experienced a 246-foot (75&nbsp;m) tsunami, and 100,000&nbsp;years ago a ] {{convert|1066|ft|m|0}} high struck ].<ref name="Decker"/>


Two guides joined them at Sunday Station: Keaweehu, "the bird-catcher" and another whose Hawaiian name is not recorded, called "ragsdale". Although Wilkes thought he was almost to the summit, the guides knew they were less than halfway up. Since there was no water at Sunday Station, porters had to be sent back ten miles (16&nbsp;km) to a ] on ʻAinapō Trail which had a known supply. After an entire day replenishing stocks, they continued up to a second camp they called "Recruiting Station" at about {{convert|9000|ft|m}} elevation. After another full day's hike they established "Flag Station" on December 22, and by this time were on the ʻAinapō Trail. Most of the porters were sent back down to get another load.
A recent example of the risks associated with slumps occurred in 1975, when the Hilina Slump suddenly moved forward by several yards. A ] 7.2 earthquake resulted which triggered a small ] with a wave height of a few yards, killing two campers at ].<ref>Cannon EC, Bürgmann R, Owen SE (2001), ''Shallow Normal Faulting and Block Rotation Associated with the 1975 Kalapana Earthquake, Kilauea'', Bulletin of the Seismological Society of America</ref>


At the Flag Station Wilkes and his eight remaining men built a circular wall of lava rocks and covered the shelter with a canvas tent. A snowstorm was in progress and several suffered from ]. That night (December 23), the snow on the canvas roof caused it to collapse. At daylight some of the group went down the trail to retrieve firewood and the gear abandoned on the trail the day before. After another day's climb, nine men reached the rim of Mokuʻāweoweo. They could not find a way down its steep sides so chose a smooth place on the rim for the camp site, at coordinates {{coord|19|27|59|N|155|34|54|W| type:landmark_region:US-HI| display=inline}}. Their tent was pitched within {{convert|60|ft|m}} of the crater's edge, secured by lava blocks.<ref name="focus">{{cite web| author=Russell A. Apple
==Monitoring==
|url={{NRHP url|id=74000295}} | title=Wilkes Campsite Nomination form | work=National Register of Historic Places | publisher=National Park Service |year=1973}}</ref>
] on Mauna Loa, used to predict eruptions by measuring very small changes in the profile of the mountain.]]


The next morning they were unable to start a fire using friction due to the thin air at that altitude, and sent for matches. By this time, the naval officers and Hawaiians could not agree on terms to continue hiring porters, so sailors and marines were ordered from the ships. Dr. Judd traveled between the summit and the Recruiting Station to tend the many who suffered from altitude sickness or had worn out their shoes on the rough rock. Christmas Day was spent building rock walls around the camp to give some protection from the high winds and blowing snow. It took another week to bring all the equipment to the summit, including a ] designed for measuring slight variations in gravity.<ref name="focus"/>
Mauna Loa is an intensively monitored volcano. The ] (HVO) was established in 1912 to observe the Hawaiian volcanoes, and the HVO has developed many techniques to help predict when eruptions at Mauna Loa and other volcanoes are imminent.
]


On December 31, 1840, the pre-fabricated pendulum house was assembled. Axes and chisels cut away the rock surface for the pendulum's base. It took another three days to adjust the clock to the point where the experiments could begin. However, the high winds made so much noise that the ticks could often not be heard, and varied the temperature to make measurements inaccurate. Grass had to be painstakingly brought from the lowest elevations for insulation to get accurate measurements.
One of the most important tools is seismometry. More than 60 ]s around the Big Island enable scientists to measure the intensities and locations of hundreds of small earthquakes every week. Earthquakes can begin to increase years before an eruption actually starts: The 1975 and 1984 eruptions were both preceded by one to two years of increased seismic activity at depths of less than {{convert|8|mi|km|0}}.


On Monday, January 11, Wilkes hiked around the summit crater. Using an optical method, he estimated Mauna Kea was {{convert|193|ft|m}} higher, while modern measurements indicate a difference of about {{convert|125|ft|m}}.<ref name=maunakea/> On January 13, 1841, he had "Pendulum Peak, January 1841 U.S. Ex, Ex." cut into a rock at the site.
Another type of seismic activity occurs in the hours preceding an eruption. So-called ] is a continuous "rumble" which contrasts with the normal seismic activity of sudden shocks and is believed to be caused by the rapid movement of magma underground. Volcanic tremor normally indicates an imminent eruption, although it may also be caused by shallow intrusions of magma which do not reach the surface.
The tents were dismantled and Hawaiians carried the gear down over the next three days, while Wilkes enjoyed a ]. He continued his measurements at lower elevations and left the island on March 5. For all the effort he did not obtain any significant results, attributing gravity discrepancies to "the tides".<ref name="measuring"/>


The Wilkes expedition's camp site's ruins are the only known physical evidence in the Pacific of the U.S. Exploring Expedition.<ref name="focus"/> The camp site was listed on the ] on July 24, 1974, as site 74000295,<ref name="nris">{{NRISref|2009a}}</ref> and is state historic site 10-52-5507.<ref> on official state web site</ref>
Another important indicator of what is happening underground is the shape of the mountain. ]s measure very small changes in the profile of the mountain, and sensitive equipment measures distances between points on the mountain. As magma fills the shallow reservoirs below the summit and rift zones, the mountain inflates. A survey line across the caldera measured a 3-inch (76&nbsp;mm) increase in its width over the year preceding the 1975 eruption and a similar increase before the 1984 eruption.<ref name="Decker" />


==Observatories== ===Today===
A summit shelter was built with some of the stones from Wilkes' camp site and mortar in 1934. In 1916 Mokuʻāweoweo was included in ], and a new trail was built directly from park headquarters at Kīlauea, an even more direct route than the one taken by Wilkes.<ref name="nrhpinv2"/> This trail, arriving at the summit from the east via Red Hill, became the preferred route due to its easier access and gentler slope. The historic ] fell into disuse, and was reopened in the 1990s. A third modern route to the summit is from the ] up to the ] which is at {{convert|11135|ft|m}} elevation a few miles north of Mokuʻāweoweo and the North Pit trail.<ref>{{cite web| url=http://www.mlo.noaa.gov |title=NOAA Mauna Loa Observatory |publisher=] web site |access-date=July 4, 2009}}</ref>
] concentrations measured at the ].]]
The location of Mauna Loa has made it an important location for atmospheric monitoring by the ] and other scientific observations. The ] (MLSO), located at {{convert|11155|ft|m|0}} on the northern slope of the mountain, has long been prominent in observations of the ]. The ] ] (MLO) is located close by. From its location well above local human-generated influences, the MLO monitors the global atmosphere, including the ] ]. Measurements are adjusted to account for local degassing of CO<sub>2</sub> from the volcano.<ref>Rhodes, J.M. and Lockwood, J. P. (editors), (1995) ''Mauna Loa Revealed: Structure, Composition, History, and Hazards'', Washington D.C., American Geophysical Union Monograph 92, page 95</ref>


==Climate==
Since October 2006, the ] (AMIBA) has been exploring the origin of the universe.
]
]s blow from east to west across the Hawaiian islands, and the presence of Mauna Loa strongly affects the local climate. At low elevations, the eastern (windward) side of the volcano receives heavy rain; ] is the wettest city in Hawaii and the fourth-wettest city in the United States, behind the ]n cities of ], ] and ]. The rainfall supports extensive ]ation. The western (leeward) side has a much drier climate. At higher elevations, the amount of precipitation decreases, and skies are very often clear. Very low temperatures mean that precipitation often occurs in the form of snow, and the summit of Mauna Loa is described as a '']'' region, where freezing and thawing play a significant role in shaping the landscape.<ref>{{cite web|url=http://www.soest.hawaii.edu/GG/HCV/mloa-flora.html|title=Mauna Loa Flora and Climate|publisher=Hawaii Center for Volcanology|year=2004|access-date=July 28, 2007|last=Rubin|first=Ken|author2=Minicola, Rochelle}}</ref>


Mauna Loa has a ] with warm temperatures at lower elevations and cool to cold temperatures higher up year-round. Below is the table for the slope observatory, which is at {{convert|11150|ft|m}} in the ]. The highest recorded temperature was {{convert|78|F|C}} and the lowest was {{convert|18|F|C}} on September 26, 1990, and February 20, 1962, respectively.<ref name= NOAA>{{cite web |url = https://www.weather.gov/wrh/Climate?wfo=hfo |title = NowData – NOAA Online Weather Data |publisher = National Oceanic and Atmospheric Administration |access-date = September 13, 2021}}</ref>
The ] maintains seismic sensors and a ] on Moku{{okina}}āweoweo.<ref>{{cite web| url=http://hvo.wr.usgs.gov/cam2 |title=Live panorama of Mokuaweoweo |accessdate=2009-07-04 |publisher=], Hawaii Volcanoes Observatory web site }}</ref>

{{clear}}
{{Weather box
|collapsed=
|single line= Y
|location= Mauna Loa 5 NNE (1991–2020 normals, extremes 2005–present)
|temperature colour=
|Jan record high F= 66
|Feb record high F= 66
|Mar record high F= 66
|Apr record high F= 67
|May record high F= 67
|Jun record high F= 68
|Jul record high F= 69
|Aug record high F= 68
|Sep record high F= 67
|Oct record high F= 66
|Nov record high F= 64
|Dec record high F= 63
|Jan avg record high F = 60.1
|Feb avg record high F = 58.1
|Mar avg record high F = 58.5
|Apr avg record high F = 61.0
|May avg record high F = 63.7
|Jun avg record high F = 64.7
|Jul avg record high F = 65.3
|Aug avg record high F = 64.8
|Sep avg record high F = 62.8
|Oct avg record high F = 62.9
|Nov avg record high F = 59.4
|Dec avg record high F = 58.6
|year avg record high F = 66.6
|Jan high F= 51.1
|Feb high F= 50.1
|Mar high F= 50.5
|Apr high F= 53.1
|May high F= 55.5
|Jun high F= 57.6
|Jul high F= 57.5
|Aug high F= 57.3
|Sep high F= 56.5
|Oct high F= 55.8
|Nov high F= 52.4
|Dec high F= 51.1
|year high F= 54.0
|Jan mean F = 43.2
|Feb mean F = 42.2
|Mar mean F = 42.7
|Apr mean F = 44.8
|May mean F = 47.4
|Jun mean F = 49.3
|Jul mean F = 49.1
|Aug mean F = 49.0
|Sep mean F = 48.6
|Oct mean F = 47.7
|Nov mean F = 44.8
|Dec mean F = 43.4
|year mean F = 46.0
|Jan low F= 35.4
|Feb low F= 34.3
|Mar low F= 34.8
|Apr low F= 36.5
|May low F= 39.3
|Jun low F= 41.1
|Jul low F= 40.7
|Aug low F= 40.7
|Sep low F= 40.6
|Oct low F= 39.6
|Nov low F= 37.2
|Dec low F= 35.8
|year low F= 38.0
|Jan avg record low F = 28.1
|Feb avg record low F = 27.7
|Mar avg record low F = 29.7
|Apr avg record low F = 31.3
|May avg record low F = 32.7
|Jun avg record low F = 35.4
|Jul avg record low F = 35.2
|Aug avg record low F = 35.6
|Sep avg record low F = 35.9
|Oct avg record low F = 34.8
|Nov avg record low F = 31.4
|Dec avg record low F = 30.5
|year avg record low F = 25.7
|Jan record low F= 22
|Feb record low F= 21
|Mar record low F= 27
|Apr record low F= 28
|May record low F= 31
|Jun record low F= 31
|Jul record low F= 30
|Aug record low F= 31
|Sep record low F= 33
|Oct record low F= 32
|Nov record low F= 29
|Dec record low F= 26
|year record low F= 21
|precipitation colour = green
|Jan precipitation inch = 1.10
|Feb precipitation inch = 1.04
|Mar precipitation inch = 1.94
|Apr precipitation inch = 0.87
|May precipitation inch = 0.60
|Jun precipitation inch = 0.43
|Jul precipitation inch = 1.27
|Aug precipitation inch = 2.38
|Sep precipitation inch = 0.67
|Oct precipitation inch = 1.47
|Nov precipitation inch = 1.21
|Dec precipitation inch = 1.32
|year precipitation inch = 14.30
|unit precipitation days = 0.01 inch
|Jan precipitation days = 3.9
|Feb precipitation days = 5.7
|Mar precipitation days = 6.8
|Apr precipitation days = 4.1
|May precipitation days = 4.1
|Jun precipitation days = 2.1
|Jul precipitation days = 3.7
|Aug precipitation days = 6.0
|Sep precipitation days = 4.8
|Oct precipitation days = 4.9
|Nov precipitation days = 4.6
|Dec precipitation days = 5.6
|year precipitation days = 56.3
|source 1 = NOAA<ref name= NOAA/><ref>
{{cite web
|url = https://www.ncei.noaa.gov/access/services/data/v1?dataset=normals-monthly-1991-2020&stations=USW00021514&format=pdf&dataTypes=MLY-TMAX-NORMAL,MLY-TMIN-NORMAL,MLY-TAVG-NORMAL,MLY-PRCP-NORMAL,MLY-SNOW-NORMAL
|title = U.S. Climate Normals Quick Access – Station: N POLE, AK US USC00506581
|access-date = June 10, 2023
|archive-url = https://web.archive.org/web/20230610053050/https://www.ncei.noaa.gov/access/services/data/v1?dataset=normals-monthly-1991-2020&stations=USW00021514&format=pdf&dataTypes=MLY-TMAX-NORMAL,MLY-TMIN-NORMAL,MLY-TAVG-NORMAL,MLY-PRCP-NORMAL,MLY-SNOW-NORMAL
|archive-date = 2023-06-10
}}
</ref>}}

{{Weather box
|location = Mauna Loa slope observatory 3,400 meters (11,150 feet) (1981–2010 normals, extremes 1955–present)
|single line = Y
|temperature colour=
|Jan record high F = 67
|Feb record high F = 69
|Mar record high F = 66
|Apr record high F = 67
|May record high F = 68
|Jun record high F = 71
|Jul record high F = 70
|Aug record high F = 69
|Sep record high F = 78
|Oct record high F = 68
|Nov record high F = 65
|Dec record high F = 67
|year record high F = 78
|Jan avg record high F = 59.7
|Feb avg record high F = 59.2
|Mar avg record high F = 59.3
|Apr avg record high F = 61.0
|May avg record high F = 62.5
|Jun avg record high F = 64.9
|Jul avg record high F = 65.0
|Aug avg record high F = 64.9
|Sep avg record high F = 64.1
|Oct avg record high F = 62.2
|Nov avg record high F = 60.2
|Dec avg record high F = 59.6
|year avg record high F = 67.2
|Jan high F = 51.9
|Feb high F = 51.2
|Mar high F = 51.9
|Apr high F = 53.2
|May high F = 55.8
|Jun high F = 58.5
|Jul high F = 57.5
|Aug high F = 57.9
|Sep high F = 56.7
|Oct high F = 55.7
|Nov high F = 53.2
|Dec high F = 52.0
|year high F = 54.6
|Jan mean F = 43.6
|Feb mean F = 42.4
|Mar mean F = 43.1
|Apr mean F = 44.3
|May mean F = 47.1
|Jun mean F = 49.3
|Jul mean F = 48.6
|Aug mean F = 49.1
|Sep mean F = 48.1
|Oct mean F = 47.3
|Nov mean F = 46.1
|Dec mean F = 44.1
|year mean F = 46.1
|Jan low F = 35.3
|Feb low F = 33.7
|Mar low F = 34.2
|Apr low F = 35.3
|May low F = 38.4
|Jun low F = 40.2
|Jul low F = 39.6
|Aug low F = 40.2
|Sep low F = 39.4
|Oct low F = 38.8
|Nov low F = 38.9
|Dec low F = 36.2
|year low F = 37.5
|Jan avg record low F = 28.1
|Feb avg record low F = 27.3
|Mar avg record low F = 28.5
|Apr avg record low F = 29.8
|May avg record low F = 32.6
|Jun avg record low F = 34.6
|Jul avg record low F = 34.4
|Aug avg record low F = 35.4
|Sep avg record low F = 34.3
|Oct avg record low F = 33.7
|Nov avg record low F = 32.0
|Dec avg record low F = 28.7
|year avg record low F = 25.4
|Jan record low F = 19
|Feb record low F = 18
|Mar record low F = 20
|Apr record low F = 23
|May record low F = 27
|Jun record low F = 28
|Jul record low F = 26
|Aug record low F = 28
|Sep record low F = 29
|Oct record low F = 27
|Nov record low F = 25
|Dec record low F = 21
|year record low F = 18
|precipitation colour=green
|Jan precipitation inch = 2.48
|Feb precipitation inch = 1.51
|Mar precipitation inch = 1.75
|Apr precipitation inch = 1.33
|May precipitation inch = 1.00
|Jun precipitation inch = 0.51
|Jul precipitation inch = 1.16
|Aug precipitation inch = 1.50
|Sep precipitation inch = 1.36
|Oct precipitation inch = 1.16
|Nov precipitation inch = 1.78
|Dec precipitation inch = 2.01
|year precipitation inch = 17.55
|unit precipitation days = 0.01 in
|Jan precipitation days = 4
|Feb precipitation days = 5
|Mar precipitation days = 6
|Apr precipitation days = 5
|May precipitation days = 4
|Jun precipitation days = 3
|Jul precipitation days = 4
|Aug precipitation days = 5
|Sep precipitation days = 5
|Oct precipitation days = 5
|Nov precipitation days = 5
|Dec precipitation days = 4
|year precipitation days = 55
|Jan snow inch = 0.0
|Feb snow inch = 1.0
|Mar snow inch = 0.3
|Apr snow inch = 1.3
|May snow inch = 0.0
|Jun snow inch = 0.0
|Jul snow inch = 0.0
|Aug snow inch = 0.0
|Sep snow inch = 0.0
|Oct snow inch = 0.0
|Nov snow inch = 0.0
|Dec snow inch = 1.0
|year snow inch = 3.7
|source 1 = ]<ref name= NOAA/><ref name=NCEI>
{{cite web
|url = https://www.ncei.noaa.gov/access/services/data/v1?dataset=normals-monthly&startDate=0001-01-01&endDate=9996-12-31&stations=USC00516198&format=pdf
|title = Station: Mauna Loa Slope OBS 39, Hawaii
|work = U.S. Monthly Climate Normals (1981–2010)
|publisher = National Oceanic and Atmospheric Administration
|access-date = September 13, 2021
|archive-url = https://web.archive.org/web/20211203224150/https://www.ncei.noaa.gov/access/services/data/v1?dataset=normals-monthly&startDate=0001-01-01&endDate=9996-12-31&stations=USC00516198&format=pdf
|archive-date = 2021-12-03}}</ref>
|source 2 = Western Climate Center (precipitation and snow 1955–2005)<ref>{{cite web|work=MAUNA LOA SLOPE OBS, HAWAII|title=Period of Record Monthly Climate Summary|url=http://www.wrcc.dri.edu/cgi-bin/cliMAIN.pl?himaun|publisher=NOAA|access-date=September 13, 2021}}</ref>}}
{{Graph:Weather monthly history
| table=ncei.noaa.gov/weather/Mauna Loa.tab
| title=Mauna Loa monthly weather statistics}}

==Observatories==
] concentrations measured at the ].]]
The location of Mauna Loa has made it an important location for atmospheric monitoring by the ] and other scientific observations. The ] (MLSO), located at {{convert|11155|ft|m|0}} on the northern slope of the mountain, has long been prominent in observations of the Sun. The ] ] (MLO) is located close by. From its location well above local human-generated influences, the MLO monitors the global atmosphere, including the ] ]. Measurements are adjusted to account for local ] of CO<sub>2</sub> from the volcano.<ref>Rhodes, J.M. and Lockwood, J. P. (editors), (1995) ''Mauna Loa Revealed: Structure, Composition, History, and Hazards'', Washington D.C., American Geophysical Union Monograph 92, p. 95</ref>

The ] (AMiBA) sits at an elevation of {{convert|11155|ft|m|0|sp=us}}. It was established in October 2006 by the ] (ASIAA) to examine ].<ref>{{cite web|url=http://www.asiaa.sinica.edu.tw/project/amiba.php|title=The Yuan Tseh Lee Array for Microwave Background Anisotropy (AMiBA)|publisher=]|date=May 12, 2012|access-date=July 26, 2013}}</ref>


==See also== ==See also==
*]
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*]
*]
*] – The tallest volcano in the Solar System

==Notes==
{{notelist}}


==References== ==References==
{{reflist|colwidth=30em}} {{reflist}}


==External links== ==External links==
{{commons category}} {{Commons and category|Mauna Loa}}
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{{featured article}} {{Featured article}}
{{Hawaii highest}}
{{Hawaiian volcanism}} {{Hawaiian volcanism}}
{{Decade Volcanoes}} {{Decade Volcanoes}}
{{National Register of Historic Places}}


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Latest revision as of 06:49, 17 August 2024

Volcano in Hawaii, United States Not to be confused with Mauna Kea. For other uses, see Mauna Loa (disambiguation).

Mauna Loa
Mauna Loa as seen from the air.
Hualālai is visible in the background.
Highest point
Elevation13,679 ft (4,169 m)
Prominence7,079 ft (2,158 m)
Listing
Coordinates19°28′46″N 155°36′10″W / 19.47944°N 155.60278°W / 19.47944; -155.60278
Geography
Mauna Loa is located in Hawaii (island)Mauna LoaMauna LoaHawaii, U.S.Show map of Hawaii (island)Mauna Loa is located in HawaiiMauna LoaMauna LoaMauna Loa (Hawaii)Show map of Hawaii
Parent rangeHawaiian Islands
Topo mapUSGS Mauna Loa
Geology
Rock age700,000–1 million
Mountain typeShield volcano
Volcanic arc/beltHawaiian-Emperor seamount chain
Last eruptionNovember 27, 2022 - December 13, 2022
Climbing
First ascentAncient times
Easiest routeAinapo Trail

Mauna Loa (/ˌmɔːnə ˈloʊ.ə, ˌmaʊnə -/, Hawaiian: [ˈmɐwnə ˈlowə]; lit. 'Long Mountain') is one of five volcanoes that form the Island of Hawaii in the U.S. state of Hawaii in the Pacific Ocean. Mauna Loa is Earth's largest active volcano by both mass and volume. It was historically considered to be the largest volcano on Earth until Tamu Massif was discovered to be larger. Mauna Loa is a shield volcano with relatively gentle slopes, and a volume estimated at 18,000 cubic miles (75,000 km), although its peak is about 125 feet (38 m) lower than that of its neighbor, Mauna Kea. Lava eruptions from Mauna Loa are silica-poor and very fluid, and tend to be non-explosive.

Mauna Loa has likely been erupting for at least 700,000 years, and may have emerged above sea level about 400,000 years ago. Some dated rocks are 470,000 years old. The volcano's magma comes from the Hawaii hotspot, which has been responsible for the creation of the Hawaiian Island chain over tens of millions of years. The slow drift of the Pacific Plate will eventually carry Mauna Loa away from the hotspot within 500,000 to one million years from now, at which point it will become extinct.

Mauna Loa's most recent eruption began on November 27, 2022, and ended on December 13, 2022. It was the first eruption since 1984. No recent eruptions of the volcano have caused fatalities, but eruptions in 1926 and 1950 destroyed villages, and the city of Hilo is partly built on lava flows from the late 19th century.

Because of the potential hazards it poses to population centers, Mauna Loa is part of the Decade Volcanoes program, which encourages studies of the world's most dangerous volcanoes. Mauna Loa has been monitored intensively by the Hawaiian Volcano Observatory since 1912. Observations of the atmosphere are undertaken at the Mauna Loa Observatory, and of the Sun at the Mauna Loa Solar Observatory, both located near the mountain's summit. Hawaii Volcanoes National Park covers the summit and portions of the southeastern and southwestern flanks of the volcano, and also incorporates Kīlauea, a separate volcano.

Geology

Setting

Position of Mauna Loa on Hawaiʻi islandLandsat mosaic; recent lava flows appear in black

Like all Hawaiian volcanoes, Mauna Loa was created as the Pacific tectonic plate moved over the Hawaii hotspot in the Earth's underlying mantle. The Hawaii island volcanoes are the most recent evidence of this process that, over 70 million years, has created the 3,700 mi (6,000 km)-long Hawaiian–Emperor seamount chain. The prevailing view states that the hotspot has been largely stationary within the planet's mantle for much, if not all of the Cenozoic Era. However, while the Hawaiian mantle plume is well understood and extensively studied, the nature of hotspots themselves remains fairly enigmatic.

Mauna Loa is one of five subaerial volcanoes that make up the island of Hawaiʻi. The oldest volcano on the island, Kohala, is more than a million years old, and Kīlauea, the youngest, is believed to be between 210,000 and 280,000 years of age. Kamaʻehuakanaloa (formerly Lōʻihi) on the island's flank is even younger, but has yet to breach the surface of the Pacific Ocean. At 1 million to 600,000 years of age, Mauna Loa is the second youngest of the five volcanoes on the island, making it the third youngest volcano in the Hawaiian – Emperor seamount chain, a chain of shield volcanoes and seamounts extending from Hawaii to the Kuril–Kamchatka Trench in Russia.

Mauna Loa from Hilo Bay, December 2017

Following the pattern of Hawaiian volcano formation, Mauna Loa would have started as a submarine volcano, gradually building itself up through underwater eruptions of alkali basalt before emerging from the sea through a series of surtseyan eruptions about 400,000 years ago. Since then, the volcano has remained active, with a history of effusive and explosive eruptions, including 34 eruptions since the first well-documented eruption in 1843.

Structure

Mauna Loa's summit, overlaid with 100 m (328 ft) contour lines; its rift zones are visible from the air.Mokuʻāweoweo, Mauna Loa's summit caldera, covered in snow.

Mauna Loa is the largest active volcano on Earth and the planet's third largest volcano behind Pūhāhonu, which is also in the Hawaiian chain, and the Tamu Massif. It covers a land area of 5,271 km (2,035 sq mi) and spans a maximum width of 120 km (75 mi). Consisting of approximately 65,000 to 80,000 km (15,600 to 19,200 cu mi) of solid rock, it makes up more than half of the surface area of the island of Hawaiʻi. Combining the volcano's extensive submarine flanks (5,000 m (16,400 ft) to the sea floor) and 4,170 m (13,680 ft) subaerial height, Mauna Loa rises 9,170 m (30,085 ft) from base to summit, greater than the 8,848 m or 29,029 ft elevation of Mount Everest from sea level to its summit. In addition, much of the mountain is invisible even underwater: its mass depresses the crust beneath it by another 8 km (5 mi), in the shape of an inverse mountain, meaning the total height of Mauna Loa from the start of its eruptive history is about 17,170 m (56,000 ft).

Snow-covered Moku‘aweoweo caldera in 2016

Mauna Loa is a typical shield volcano in form, taking the shape of a long, broad dome extending down to the ocean floor whose slopes are about 12° at their steepest, a consequence of its extremely fluid lava. The shield-stage lavas that built the enormous main mass of the mountain are tholeiitic basalts, like those of Mauna Kea, created through the mixing of primary magma and subducted oceanic crust. Mauna Loa's summit hosts three overlapping pit craters arranged northeast–southwest, the first and last roughly 1 km (0.6 mi) in diameter and the second an oblong 4.2 km × 2.5 km (2.6 mi × 1.6 mi) feature; together these three craters make up the 6.2 by 2.5 km (3.9 by 1.6 mi) summit caldera Mokuʻāweoweo, so named for the Hawaiian ʻāweoweo fish (Priacanthus meeki), purportedly due to the resemblance of its eruptive fires to the coloration of the fish. Mokuʻāweoweo's caldera floor lies between 170 and 50 m (558 and 164 ft) beneath its rim and it is only the latest of several calderas that have formed and reformed over the volcano's life. It was created between 1,000 and 1,500 years ago by a large eruption from Mauna Loa's northeast rift zone, which emptied out a shallow magma chamber beneath the summit and collapsed it into its present form. Additionally, two smaller pit craters lie southwest of the caldera, named Lua Hou (New Pit) and Lua Hohonu (Deep Pit).

Mauna Loa's summit is also the focal point for its two prominent rift zones, marked on the surface by well-preserved, relatively recent lava flows (easily seen in satellite imagery) and linearly arranged fracture lines intersected by cinder and splatter cones. These rift zones are deeply set structures, driven by dike intrusions along a decollement fault that is believed to reach down all the way to the volcano's base, 12 to 14 km (7 to 9 mi) deep. The first is a 60 km (37 mi) rift trending southwest from the caldera to the sea and a further 40 km (25 mi) underwater, with a prominent 40° directional change along its length; this rift zone is historically active across most of its length. The second, northeastern rift zone extends towards Hilo and is historically active across only the first 20 km (12 mi) of its length, with a nearly straight and, in its latter sections, poorly defined trend. The northeastern rift zone takes the form of a succession of cinder cones, the most prominent of which the 60 m (197 ft) high Puu Ulaula, or Red Hill. There is also a less definite northward rift zone that extends towards the Humuula Saddle marking the intersection of Mauna Loa and Mauna Kea.

Simplified geophysical models of Mauna Loa's magma chamber have been constructed, using interferometric synthetic aperture radar measures of ground deformation due to the slow buildup of lava under the volcano's surface. These models predict a 1.1 km (1 mi) wide magma chamber located at a depth of about 4.7 km (3 mi), 0.5 km (0 mi) below sea level, near the southeastern margin of Mokuʻāweoweo. This shallow magma chamber is significantly higher-placed than Mauna Loa's rift zones, suggesting magma intrusions into the deeper parts and occasional dike injections into the shallower parts of the rift zone drive rift activity; a similar mechanism has been proposed for neighboring Kīlauea. Earlier models, based on Mauna Loa's 1975 and 1984 eruptions, made a similar prediction, placing the chamber at 3 km (1.9 mi) deep in roughly the same geographic position.

Mauna Loa has complex interactions with its neighbors, Hualālai to the northwest, Mauna Kea to the northeast, and particularly Kīlauea to the east. Lavas from Mauna Kea intersect with Mauna Loa's basal flows as a consequence of Kea's older age, and Mauna Kea's original rift zones were buried beneath post-shield volcanic rocks of Mauna Loa; additionally, Mauna Kea shares Mauna Loa's gravity well, depressing the ocean crust beneath it by 6 km (4 mi). There are also a series of normal faults on Mauna Loa's northern and western slopes, between its two major rift zones, that are believed to be the result of combined circumferential tension from the two rift zones and from added pressure due to the westward growth of neighboring Kīlauea.

Captured from Maunakea, this Image features a skyscape of Mauna Loa.

Because Kīlauea lacks topographical prominence and appears as a bulge on the southeastern flank of Mauna Loa, it was historically interpreted by both native Hawaiians and early geologists to be an active satellite of Mauna Loa. However, analysis of the chemical composition of lavas from the two volcanoes show that they have separate magma chambers, and are thus distinct. Nonetheless, their proximity has led to a historical trend in which high activity at one volcano roughly coincides with low activity at the other. When Kīlauea lay dormant between 1934 and 1952, Mauna Loa became active, and when the latter remained quiet from 1952 to 1974, the reverse was true. This is not always the case; the 1984 eruption of Mauna Loa started during an eruption at Kīlauea, but had no discernible effect on the Kīlauea eruption, and the 2022 eruption of Mauna Loa occurred during an eruption of Kīlauea. Geologists have suggested that "pulses" of magma entering Mauna Loa's deeper magma system may have increased pressure inside Kīlauea and triggered the concurrent eruptions.

Mauna Loa is slumping eastward along its southwestern rift zone, leveraging its mass into Kīlauea and driving the latter eastward at a rate of about 10 cm (4 in) per year; the interaction between the two volcanoes in this manner has generated a number of large earthquakes in the past, and has resulted in a significant area of debris off Kīlauea's seaward flank known as the Hilina Slump. A system of older faults exists on the southeastern side of Mauna Loa that likely formed before Kilauea became large enough to impede Mauna Loa's slump, the lowest and northernmost of which, the Kaoiki fault, remains an active earthquake center today. The west side of Mauna Loa, meanwhile, is unimpeded in movement, and indeed is believed to have undergone a massive slump collapse between 100,000 and 200,000 years ago, the residue from which, consisting of a scattering of debris up to several kilometers wide and up to 50 km (31 mi) distant, is still visible today. The damage was so extensive that the headwall of the damage likely intersected its southwestern rift zone. There is very little movement there today, a consequence of the volcano's geometry.

A view of Mauna Loa taken from a hill near The Onizuka Center for International Astronomy Visitor Information Station at the 9,300 ft (2,800 m) level of Mauna Kea.

Mauna Loa is tall enough to have experienced glaciation during the last ice age, 25,000 to 15,000 years ago. Unlike Mauna Kea, on which extensive evidence of glaciation remains even today, Mauna Loa was at the time and has remained active, having grown an additional 150 to 300 m (492 to 984 ft) in height since then and covering any glacial deposits beneath new flows; strata of that age don't occur until at least 2,000 m (6,562 ft) down from the volcano's summit, too low for glacial growth. Mauna Loa also lacks its neighbor's summit permafrost region, although sporadic ice persists in places. It is speculated that extensive phreatomagmatic activity occurred during this time, contributing extensively to ash deposits on the summit.

Eruptive history

See also: List of Mauna Loa eruptions

Prehistoric eruptions

A cinder cone and surrounding flows on Mauna Loa

To have reached its enormous size within its relatively short (geologically speaking) 600,000 to 1,000,000 years of life, Mauna Loa would logically have had to have grown extremely rapidly through its developmental history, and extensive charcoal-based radiocarbon dating (perhaps the most extensive such prehistorical eruptive dating on Earth) has amassed a record of almost two hundred reliably dated extant flows confirming this hypothesis.

Lava samples, including those obtained by drilling projects, have been dated at least to 470,000 years ago. For technical reasons the oldest ages obtained by modern techniques at 657,000 years ago have large errors of the order of 200,000 years, as did some historic dating attempts on younger lavas making them older than was the case. Some of the oldest exposed flows on Mauna Loa are the Ninole Hills on its southern flank, subaerial basalt rock dating back approximately 100 to 200 thousand years. They form a terrace against which younger flows have since banked, heavily eroded and incised against its slope in terms of direction; this is believed to be the result of a period of erosion because of a change in the direction of lava flow caused by the volcano's prehistoric slump. These are followed by two units of lava flows separated by an intervening ash layer known as the Pāhala ash layer: the older Kahuka basalt, sparsely exposed on the lower southwest rift, and the younger and far more widespread Kaʻu basalt, which appear more widely on the volcano. The Pāhala ashes themselves were produced over a long period of time circa 13 to 30 thousand years ago, although heavy vitrification and interactions with post- and pre- creation flows has hindered exact dating. Their age roughly corresponds to the glaciation of Mauna Loa during the last ice age, raising the distinct possibility that it is the product of phreatomagmatic interaction between the long-gone glaciers and Mauna Loa's eruptive activities.

Studies have shown that a cycle occurs in which volcanic activity at the summit is dominant for several hundred years, after which activity shifts to the rift zones for several more centuries, and then back to the summit again. Two cycles have been clearly identified, each lasting 1,500–2,000 years. This cyclical behavior is unique to Mauna Loa among the Hawaiian volcanoes. Between about 7,000 and 6,000 years ago Mauna Loa was largely inactive. The cause of this cessation in activity is not known, and no known similar hiatus has been found at other Hawaiian volcanoes except for those currently in the post-shield stage. Between 11,000 and 8,000 years ago, activity was more intense than it is today. However, Mauna Loa's overall rate of growth has probably begun to slow over the last 100,000 years, and the volcano may in fact be nearing the end of its tholeiitic basalt shield-building phase.

Recent history

Lava fountains and a'a channel flow from Mauna Loa, 1984

Ancient Hawaiians have been present on Hawaiʻi island for about 1,500 years, but they preserved almost no records on volcanic activity on the island, beyond a few fragmentary accounts dating to the late 18th and early 19th centuries. Possible eruptions occurred around 1730 and 1750 and sometime during 1780 and 1803. A June 1832 eruption was witnessed by a missionary on Maui, but the 190 km (118 mi) between the two islands and lack of apparent geological evidence have cast this testimony in doubt. Thus the first entirely confirmed historically witnessed eruption was a January 1843 event; since that time Mauna Loa has erupted 32 times.

Historical eruptions at Mauna Loa are typically Hawaiian in character and rarely violent, starting with the emergence of lava fountains over a several kilometer long rift colloquially known as the "curtain of fire" (often, but not always, propagating from Mauna Loa's summit) and eventually concentrating at a single vent, its long-term eruptive center. Activity centered on its summit is usually followed by flank eruptions up to a few months later, and although Mauna Loa is historically less active than that of its neighbor Kilauea, it tends to produce greater volumes of lava over shorter periods of time. Most eruptions are centered at either the summit or either of its two major rift zones; within the last two hundred years, 38 percent of eruptions occurred at the summit, 31 percent at the northeast rift zone, 25 percent at the southwest rift zone, and the remaining 6 percent from northwest vents. 40 percent of the volcano's surface consists of lavas less than a thousand years old, and 98 percent of lavas less than 10,000 years old. In addition to the summit and rift zones, Mauna Loa's northwestern flank has also been the source of three historical eruptions.

The 1843 event was followed by eruptions in 1849, 1851, 1852, and 1855, with the 1855 flows being particularly extensive. 1859 marked the largest of the three historical flows that have been centered on Mauna Loa's northwestern flank, producing a long lava flow that reached the ocean on Hawaii island's west coast, north of Kīholo Bay. An eruption in 1868 occurred alongside the enormous 1868 Hawaii earthquake, a magnitude eight event that claimed 77 lives and remains the largest earthquake ever to hit the island. Following further activity in 1871, Mauna Loa experienced nearly continuous activity from August 1872 through 1877, a long-lasting and voluminous eruption lasting approximately 1,200 days and never moving beyond its summit. A short single-day eruption in 1877 was unusual in that it took place underwater, in Kealakekua Bay, and within a mile of the shoreline; curious onlookers approaching the area in boats reported unusually turbulent water and occasional floating blocks of hardened lava. Further eruptions occurred in 1879 and then twice in 1880, the latter of which extended into 1881 and came within the present boundaries of the island's largest city, Hilo; however, at the time, the settlement was a shore-side village located further down the volcano's slope, and so was unaffected.

HualalaiKohalaKilaueaMauna Kea
Clickable imagemap of the United States Geological Survey hazard mapping for Hawaii island; the lowest numbers correspond with the highest hazard levels.

Mauna Loa continued its activity, and of the eruptions that occurred in 1887, 1892, 1896, 1899, 1903 (twice), 1907, 1914, 1916, 1919, and 1926, three (in 1887, 1919, and 1926) were partially subaerial. The 1926 eruption in particular is noteworthy for having inundated a village near Hoʻōpūloa, destroying 12 houses, a church, and a small harbor. After an event in 1933, Mauna Loa's 1935 eruption caused a public crisis when its flows started to head towards Hilo. A bombing operation was decided upon to try and divert the flows, planned out by then-lieutenant colonel George S. Patton. The bombing, conducted on December 27, was declared a success by Thomas A. Jaggar, director of the Hawaiian Volcano Observatory, and lava stopped flowing by January 2, 1936. However, the role the bombing played in ending the eruption has since been heavily disputed by volcanologists. A longer but summit-bound event in 1940 was comparatively less interesting.

Mauna Loa's 1942 eruption occurred only four months after the attack on Pearl Harbor and the United States' entry into World War II, and created a unique problem for the wartime United States. Occurring during an enforced nighttime blackout on the island, the eruption's luminosity forced the government to issue a gag order on the local press, hoping to prevent news of its occurrence spreading, for fear that the Japanese would use it to launch a bombing run on the island. However, as flows from the eruption rapidly spread down the volcano's flank and threatened the ʻOlaʻa flume, Mountain View's primary water source, the United States Army Air Force decided to drop its own bombs on the island in the hopes of redirecting the flows away from the flume; sixteen bombs weighing between 300 and 600 lb (136 and 272 kg) each were dropped on the island, but produced little effect. Eventually, the eruption ceased on its own.

Following a 1949 event, the next major eruption at Mauna Loa occurred in 1950. Originating from the volcano's southwestern rift zone, the eruption remains the largest rift event in the volcano's modern history, lasting 23 days, emitting 376 million cubic meters of lava, and reaching the 24 km (15 mi) distant ocean within 3 hours. The 1950 eruption was not the most voluminous eruption on the volcano (the long-lived 1872–1877 event produced more than twice as much material), but it was easily one of the fastest-acting, producing the same amount of lava as the 1859 eruption in a tenth of the time. Flows overtook the village of Hoʻokena-mauka in South Kona, crossed Hawaii Route 11, and reached the sea within four hours of eruption. Although there was no loss of life, the village was permanently destroyed. After the 1950 event, Mauna Loa entered an extended period of dormancy, interrupted only by a small single-day summit event in 1975. However, it rumbled to life again in 1984, manifesting first at Mauna Loa's summit, and then producing a narrow, channelized ʻaʻā flow that advanced downslope within 6 km (4 mi) of Hilo, close enough to illuminate the city at nighttime. However, the flow got no closer, as two natural levees further up its pathway consequently broke and diverted active flows.

From 1985 to 2022, the volcano had its longest period of quiet in recorded history. Magma had been accumulating beneath Mauna Loa since the 1984 eruption, and the U.S. Geological Survey in February 2021 reported that although an eruption "did not appear to be imminent," the volcano had shown elevated signs of unrest since 2019, including a slight increase in the rate of inflation at the volcano's summit.

The quiet period ended at 11:30 pm HST on November 27, 2022, when an eruption began at the volcano's summit in Moku‘āweoweo (Mauna Loa's caldera). Lava flows emanating from the caldera became visible from Kailua-Kona in the hours immediately following the eruption. The eruption remained confined to the caldera until approximately 6:30 am HST on November 28, when the Hawaiian Volcano Observatory observed that the eruption had migrated from the summit to the Northeast Rift Zone. Three fissures were initially observed in the rift zone, with the first two becoming inactive by 1:30 PM on the 28th. Before becoming inactive, the two upper fissures fed lava flows that moved downslope, however those flows stalled approximately 11 miles (18 km) from Saddle Road. Lava fountains were also observed emanating from the fissures, with the tallest reaching up to 200 feet (61 m) into the air. As lava flows from the third fissure expanded, they cut off the road to the Mauna Loa Observatory at approximately 8 pm on the 28th. Activity in the rift zone continued on the 29th, with a fourth fissure that opened at approximately 7:30 pm on the 28th joining the third in releasing lava flows. The main front of the third fissure's lava flows also continued to move, and was located approximately 2.7 miles (4.3 km) from Saddle Road at 7 am on December 2.

As the eruption approached its second week, indications of a reduction in activity began to appear. On December 8, the lava flows feeding the main front began to drain, and the main flow front stalled approximately 1.7 miles (2.7 km) from Saddle Road. The flows continued to drain on the 9th, and the third fissure's lava fountains also began to grow shorter. On the 10th, the lava fountains were replaced by a lava pond, and the stalled flow front was declared to no longer be a threat. Based on these factors and data on past eruptions, the HVO determined that the eruption may end soon and reduced the volcano alert level from Warning to Watch at 2:35 pm on the 10th. However, there was a small possibility that the eruption would continue at a very low rate. The eruption officially ended at 7:17 am on the 13th, and the HVO lowered the volcano alert level to Advisory.

Hazards

Mauna Loa has been designated a Decade Volcano, one of the sixteen volcanoes identified by the International Association of Volcanology and Chemistry of the Earth's Interior (IAVCEI) as being worthy of particular study in light of their history of large, destructive eruptions and proximity to populated areas. The United States Geological Survey maintains a hazard zone mapping of the island done on a one to nine scale, with the most dangerous areas corresponding the smallest numbers. Based on this classification Mauna Loa's continuously active summit caldera and rift zones have been given a level one designation. Much of the area immediately surrounding the rift zones is considered level two, and about 20 percent of the area has been covered in lava in historical times. Much of the remainder of the volcano is hazard level three, about 15 to 20 percent of which has been covered by flows within the last 750 years. However, two sections of the volcano, the first in the Naalehu area and the second on the southeastern flank of Mauna Loa's rift zone, are protected from eruptive activity by local topography, and have thus been designated hazard level 6, comparable with a similarly isolated segment on Kīlauea.

Although volcanic eruptions in Hawaiʻi rarely produce casualties (the only direct historical fatality due to volcanic activity on the island occurred at Kīlauea in 1924, when an unusually explosive eruption hurled rocks at an onlooker), property damage due to inundation by lava is a common and costly hazard. Hawaiian-type eruptions usually produce extremely slow-moving flows that advance at walking pace, presenting little danger to human life, but this is not strictly the case; Mauna Loa's 1950 eruption emitted as much lava in three weeks as Kīlauea's recent eruption produced in three years and reached sea level within four hours of its start, overrunning the village of Hoʻokena Mauka and a major highway on the way there. An earlier eruption in 1926 overran the village of Hoʻōpūloa Makai, and Hilo, partly built on lavas from the 1880–81 eruption, is at risk from future eruptions. The 1984 eruption nearly reached the city, but stopped short after the flow was redirected by upstream topography.

A potentially greater hazard at Mauna Loa is a sudden, massive collapse of the volcano's flanks, like the one that struck the volcano's west flank between 100,000 and 200,000 years ago and formed the present-day Kealakekua Bay. Deep fault lines are a common feature on Hawaiian volcanoes, allowing large portions of their flanks to gradually slide downwards and forming structures like the Hilina Slump and the ancient Ninole Hills; large earthquakes could trigger rapid flank collapses along these lines, creating massive landslides and possibly triggering equally large tsunamis. Undersea surveys have revealed numerous landslides along the Hawaiian chain and evidence of two such giant tsunami events: 200,000 years ago, Molokaʻi experienced a 75 m (246 ft) tsunami, and 100,000 years ago a megatsunami 325 m (1,066 ft) high struck Lānaʻi. A more recent example of the risks associated with slumps occurred in 1975, when the Hilina Slump suddenly lurched forward several meters, triggering a 7.2 Mw  earthquake and a 14 m (46 ft) tsunami that killed two campers at Halape.

Monitoring

GPS stations, tiltmeters, and strainmeters on Mauna Loa's summit. Not shown: a webcam and a gas detector positioned on the caldera rim.Summit inflation as measured via GPS between June 2004 and April 2005; arrows denote between 1 and 10 cm (0.4 and 3.9 in) of growth.

Established on Kīlauea in 1912, the Hawaiian Volcano Observatory (HVO), presently a branch of the United States Geological Survey, is the primary organization associated with the monitoring, observance, and study of Hawaiian volcanoes. Thomas A. Jaggar, the Observatory's founder, attempted a summit expedition to Mauna Loa to observe its 1914 eruption, but was rebuffed by the arduous trek required (see Ascents). After soliciting help from Lorrin A. Thurston, in 1915 he was able to persuade the US Army to construct a "simple route to the summit" for public and scientific use, a project completed in December of that year; the Observatory has maintained a presence on the volcano ever since.

Eruptions on Mauna Loa are almost always preceded and accompanied by prolonged episodes of seismic activity, the monitoring of which was the primary and often only warning mechanism in the past and which remains viable today. Seismic stations have been maintained on Hawaiʻi since the Observatory's inception, but these were concentrated primarily on Kīlauea, with coverage on Mauna Loa improving only slowly through the 20th century. Following the invention of modern monitoring equipment, the backbone of the present-day monitoring system was installed on the volcano in the 1970s. Mauna Loa's July 1975 eruption was forewarned by more than a year of seismic unrest, with the HVO issuing warnings to the general public from late 1974; the 1984 eruption was similarly preceded by as much as three years of unusually high seismic activity, with volcanologists predicting an eruption within two years in 1983.

The modern monitoring system on Mauna Loa consists not only of its local seismic network but also of a large number of GPS stations, tiltmeters, and strainmeters that have been anchored on the volcano to monitor ground deformation due to swelling of Mauna Loa's subterranean magma chamber, which presents a more complete picture of the events proceeding eruptive activity. The GPS network is the most durable and wide-ranging of the three systems, while the tiltmeters provide the most sensitive predictive data, but are prone to erroneous results unrelated to actual ground deformation; nonetheless a survey line across the caldera measured a 76 mm (3 in) increase in its width over the year preceding the 1975 eruption, and a similar increase in 1984 eruption. Strainmeters, by contrast, are relatively rare. The Observatory also maintains two gas detectors at Mokuʻāweoweo, Mauna Loa's summit caldera, as well as a publicly accessible live webcam and occasional screenings by interferometric synthetic aperture radar imaging.

Human history

Pre-contact

The first Ancient Hawaiians to arrive on Hawaii island lived along the shores where food and water were plentiful. Flightless birds that had previously known no predators became a staple food source. Early settlements had a major impact on the local ecosystem, and caused many extinctions, particularly amongst bird species, as well as introducing foreign plants and animals and increasing erosion rates. The prevailing lowland forest ecosystem was transformed from forest to grassland; some of this change was caused by the use of fire, but the main reason appears to have been the introduction of the Polynesian rat (Rattus exulans).

Ancient Hawaiian religious practice holds that the five volcanic peaks of the island are sacred, and regards Mauna Loa, the largest of them all, with great admiration; but what mythology survives today consists mainly of oral accounts from the 18th century first compiled in the 19th. Most of these stories agree that the Hawaiian volcano goddess, Pele, resides in Halemaʻumaʻu on Kilauea; however a few place her home at Mauna Loa's summit caldera Mokuʻāweoweo, and the mythos in general associates her with all volcanic activity on the island. Regardless, Kīlauea's lack of a geographic outline and strong volcanic link to Mauna Loa led to it being considered an offshoot of Mauna Loa by the Ancient Hawaiians, meaning much of the mythos now associated with Kīlauea was originally directed at Mauna Loa proper as well.

Ancient Hawaiians constructed an extensive trail system on Hawaiʻi island, today known as the Ala Kahakai National Historic Trail. The network consisted of short trailheads servicing local areas along the main roads and more extensive networks within and around agricultural centers. The positioning of the trails was practical, connecting living areas to farms and ports, and regions to resources, with a few upland sections reserved for gathering and most lines marked well enough to remain identifiable long after regular use had ended. One of these trails, the Ainapo Trail, ascended from the village of Kapāpala over 3,400 m (11,155 ft) in about 56 km (35 mi) and ended at Mokuʻāweoweo at Mauna Loa's summit. Although the journey was arduous and required several days and many porters, ancient Hawaiians likely made the journey during eruptions to leave offerings and prayers to honor Pele, much as they did at Halemaʻumaʻu, neighboring Kilauea's more active and more easily accessible caldera. Several camps established along the way supplied water and food for travelers.

European summiting attempts

James Cook's third voyage was the first to make landfall on Hawaiʻi island, in 1778, and following adventures along the North American west coast, Cook returned to the island in 1779. On his second visit John Ledyard, a corporal of the Royal Marines aboard HMS Resolution, proposed and received approval for an expedition to the summit Mauna Loa to learn "about that part of the island, particularly the peak, the tip of which is generally covered with snow, and had excited great curiosity." Using a compass, Ledyard and small group of ships' mates and native attendants attempted to make a direct course for the summit. However, on the second day of traveling the route became steeper, rougher, and blocked by "impenetrable thickets," and the group was forced to abandon their attempt and return to Kealakekua Bay, reckoning they had "penetrated 24 miles and we suppose within 11 miles of the peak"; in reality, Mokuʻāweoweo lies only 32 km (20 mi) east of the bay, a severe overestimation on Ledyard's part. Another of Cook's men, Lieutenant James King, estimated the peak to be at least 5,600 m (18,373 ft) high based on its snow line.

The Scottish botanist and naturalist Archibald Menzies was the first European to reach the summit of Mauna Loa, on his third attempt.

The next attempt to summit Mauna Loa was an expedition led by Archibald Menzies, a botanist and naturalist on the 1793 Vancouver Expedition. In February of that year Menzies, two ships' mates, and a small group of native Hawaiian attendants attempted a direct course for the summit from Kealakekua Bay, making it 26 km (16 mi) inland by their reckoning (an overestimation) before they were turned away by the thickness of the forest. On a second visit by the expedition to the island in January of the next year Menzies was placed in charge of exploring the island interior, and after traversing the flanks of Hualālai he and his party arrived at the high plateau separating the two volcanoes. Menzies decided to make a second attempt (above the objections of the accompanying island chief), but again his progress was arrested by unassailable thickets.

Menzies made a third attempt to summit Mauna Loa in February 1794. This time the botanist consulted King Kamehameha I for advice and learned that he could take canoes to the south and follow the ʻAinapō Trail, not knowing of its existence beforehand. Significantly better prepared, Menzies, Lieutenant Joseph Baker and Midshipman George McKenzie of Discovery, and a servant (most likely Jonathan Ewins, listed on the ship's muster as "Botanist's L't") reached the summit, which Menzies estimated to be 4,156 m (13,635 ft) high with the aid of a barometer (consistent with a modern value of 4,169 m, 13,678 ft). He was surprised to find heavy snow and morning temperatures of −3 °C (27 °F), and was unable to compare the heights of Mauna Loa and Kea but correctly supposed the latter to be taller based on its larger snow cap. The feat of summitting Mauna Loa was not to be repeated for forty years.

The Hawaiian Islands were the site of fervent missionary work, with the first group of missionaries arrived at Honolulu in 1820 and the second in 1823. Some of these missionaries left for Hawaiʻi island, and spent ten weeks traveling around it, preaching at local villages and climbing Kilauea, from which one of its members, William Ellis, observed Mauna Loa with the aid of a telescope and ascertained it and Kea to be "perhaps 15,000 to 16,000 feet above the level of the sea"; they did not, however, attempt to climb the volcano itself. It is sometimes reported that the missionary Joseph Goodrich reached the summit around this time, but he never claimed this himself, though he did summit Mauna Kea and describe Mokuʻāweoweo with the aid of another telescope.

The next successful ascent was made on January 29, 1834, by the Scottish botanist David Douglas, who also reached the summit caldera using the ʻAinapō Trail. By the time Douglas reached the summit the environment had put him under extreme duress, but he nonetheless stayed overnight to make measurements of the summit caldera's proportions and record barometric data on its height, both now known to be wildly inaccurate. Douglas collected biological samples on the way both up and down, and after a difficult and distressing descent began collating his samples; he planned to return to England, but instead several months later his body was discovered mysteriously crushed in a pit beside a dead wild boar

Isidor Löwenstern successfully climbed Mauna Loa in February 1839, only the third successful climb in 60 years.

Wilkes expedition

Sketch of Wilkes' campsite by ship's artist Alfred Thomas Agate

The United States Exploring Expedition led by Lieutenant Charles Wilkes was tasked with a vast survey of the Pacific Ocean starting in 1838. In September 1840 they arrived in Honolulu, where repairs to the ships took longer than expected. Wilkes decided to spend the winter in Hawaii and take the opportunity to explore its volcanoes while waiting for better weather to continue the expedition. King Kamehameha III assigned American medical missionary Dr. Gerrit P. Judd to the expedition as a translator.

Wilkes sailed to Hilo on the island of Hawaiʻi and decided to climb Mauna Loa first, since it looked easier than Mauna Kea. On December 14 he hired about 200 porters, but after he left he realized only about half the equipment had been taken, so he had to hire more Hawaiians at higher pay. When they reached Kīlauea after two days, their guide Puhano headed off to the established ʻAinapō Trail. Wilkes did not want to head back downhill so he blazed his own way through dense forest directed by a compass. The Hawaiians were offended by the waste of sacred trees which did not help morale. At about 6,000 feet (1,800 m) elevation they established a camp called "Sunday Station" at the edge of the forest.

Two guides joined them at Sunday Station: Keaweehu, "the bird-catcher" and another whose Hawaiian name is not recorded, called "ragsdale". Although Wilkes thought he was almost to the summit, the guides knew they were less than halfway up. Since there was no water at Sunday Station, porters had to be sent back ten miles (16 km) to a lava tube on ʻAinapō Trail which had a known supply. After an entire day replenishing stocks, they continued up to a second camp they called "Recruiting Station" at about 9,000 feet (2,700 m) elevation. After another full day's hike they established "Flag Station" on December 22, and by this time were on the ʻAinapō Trail. Most of the porters were sent back down to get another load.

At the Flag Station Wilkes and his eight remaining men built a circular wall of lava rocks and covered the shelter with a canvas tent. A snowstorm was in progress and several suffered from altitude sickness. That night (December 23), the snow on the canvas roof caused it to collapse. At daylight some of the group went down the trail to retrieve firewood and the gear abandoned on the trail the day before. After another day's climb, nine men reached the rim of Mokuʻāweoweo. They could not find a way down its steep sides so chose a smooth place on the rim for the camp site, at coordinates 19°27′59″N 155°34′54″W / 19.46639°N 155.58167°W / 19.46639; -155.58167. Their tent was pitched within 60 feet (18 m) of the crater's edge, secured by lava blocks.

The next morning they were unable to start a fire using friction due to the thin air at that altitude, and sent for matches. By this time, the naval officers and Hawaiians could not agree on terms to continue hiring porters, so sailors and marines were ordered from the ships. Dr. Judd traveled between the summit and the Recruiting Station to tend the many who suffered from altitude sickness or had worn out their shoes on the rough rock. Christmas Day was spent building rock walls around the camp to give some protection from the high winds and blowing snow. It took another week to bring all the equipment to the summit, including a pendulum designed for measuring slight variations in gravity.

Sketch of Mokuʻāweoweo from Wilkes' journal

On December 31, 1840, the pre-fabricated pendulum house was assembled. Axes and chisels cut away the rock surface for the pendulum's base. It took another three days to adjust the clock to the point where the experiments could begin. However, the high winds made so much noise that the ticks could often not be heard, and varied the temperature to make measurements inaccurate. Grass had to be painstakingly brought from the lowest elevations for insulation to get accurate measurements.

On Monday, January 11, Wilkes hiked around the summit crater. Using an optical method, he estimated Mauna Kea was 193 feet (59 m) higher, while modern measurements indicate a difference of about 125 feet (38 m). On January 13, 1841, he had "Pendulum Peak, January 1841 U.S. Ex, Ex." cut into a rock at the site. The tents were dismantled and Hawaiians carried the gear down over the next three days, while Wilkes enjoyed a lomilomi massage. He continued his measurements at lower elevations and left the island on March 5. For all the effort he did not obtain any significant results, attributing gravity discrepancies to "the tides".

The Wilkes expedition's camp site's ruins are the only known physical evidence in the Pacific of the U.S. Exploring Expedition. The camp site was listed on the National Register of Historic Places on July 24, 1974, as site 74000295, and is state historic site 10-52-5507.

Today

A summit shelter was built with some of the stones from Wilkes' camp site and mortar in 1934. In 1916 Mokuʻāweoweo was included in Hawaii Volcanoes National Park, and a new trail was built directly from park headquarters at Kīlauea, an even more direct route than the one taken by Wilkes. This trail, arriving at the summit from the east via Red Hill, became the preferred route due to its easier access and gentler slope. The historic ʻAinapō Trail fell into disuse, and was reopened in the 1990s. A third modern route to the summit is from the Saddle Road up to the Mauna Loa Observatory which is at 11,135 feet (3,394 m) elevation a few miles north of Mokuʻāweoweo and the North Pit trail.

Climate

Climate chart for Mauna Loa

Trade winds blow from east to west across the Hawaiian islands, and the presence of Mauna Loa strongly affects the local climate. At low elevations, the eastern (windward) side of the volcano receives heavy rain; Hilo is the wettest city in Hawaii and the fourth-wettest city in the United States, behind the southeast Alaskan cities of Whittier, Ketchikan and Yakutat. The rainfall supports extensive forestation. The western (leeward) side has a much drier climate. At higher elevations, the amount of precipitation decreases, and skies are very often clear. Very low temperatures mean that precipitation often occurs in the form of snow, and the summit of Mauna Loa is described as a periglacial region, where freezing and thawing play a significant role in shaping the landscape.

Mauna Loa has a tropical climate with warm temperatures at lower elevations and cool to cold temperatures higher up year-round. Below is the table for the slope observatory, which is at 11,150 feet (3,400 m) in the alpine zone. The highest recorded temperature was 78 °F (26 °C) and the lowest was 18 °F (−8 °C) on September 26, 1990, and February 20, 1962, respectively.

Climate data for Mauna Loa 5 NNE (1991–2020 normals, extremes 2005–present)
Month Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec Year
Record high °F (°C) 66
(19)
66
(19)
66
(19)
67
(19)
67
(19)
68
(20)
69
(21)
68
(20)
67
(19)
66
(19)
64
(18)
63
(17)
69
(21)
Mean maximum °F (°C) 60.1
(15.6)
58.1
(14.5)
58.5
(14.7)
61.0
(16.1)
63.7
(17.6)
64.7
(18.2)
65.3
(18.5)
64.8
(18.2)
62.8
(17.1)
62.9
(17.2)
59.4
(15.2)
58.6
(14.8)
66.6
(19.2)
Mean daily maximum °F (°C) 51.1
(10.6)
50.1
(10.1)
50.5
(10.3)
53.1
(11.7)
55.5
(13.1)
57.6
(14.2)
57.5
(14.2)
57.3
(14.1)
56.5
(13.6)
55.8
(13.2)
52.4
(11.3)
51.1
(10.6)
54.0
(12.2)
Daily mean °F (°C) 43.2
(6.2)
42.2
(5.7)
42.7
(5.9)
44.8
(7.1)
47.4
(8.6)
49.3
(9.6)
49.1
(9.5)
49.0
(9.4)
48.6
(9.2)
47.7
(8.7)
44.8
(7.1)
43.4
(6.3)
46.0
(7.8)
Mean daily minimum °F (°C) 35.4
(1.9)
34.3
(1.3)
34.8
(1.6)
36.5
(2.5)
39.3
(4.1)
41.1
(5.1)
40.7
(4.8)
40.7
(4.8)
40.6
(4.8)
39.6
(4.2)
37.2
(2.9)
35.8
(2.1)
38.0
(3.3)
Mean minimum °F (°C) 28.1
(−2.2)
27.7
(−2.4)
29.7
(−1.3)
31.3
(−0.4)
32.7
(0.4)
35.4
(1.9)
35.2
(1.8)
35.6
(2.0)
35.9
(2.2)
34.8
(1.6)
31.4
(−0.3)
30.5
(−0.8)
25.7
(−3.5)
Record low °F (°C) 22
(−6)
21
(−6)
27
(−3)
28
(−2)
31
(−1)
31
(−1)
30
(−1)
31
(−1)
33
(1)
32
(0)
29
(−2)
26
(−3)
21
(−6)
Average precipitation inches (mm) 1.10
(28)
1.04
(26)
1.94
(49)
0.87
(22)
0.60
(15)
0.43
(11)
1.27
(32)
2.38
(60)
0.67
(17)
1.47
(37)
1.21
(31)
1.32
(34)
14.30
(363)
Average precipitation days (≥ 0.01 inch) 3.9 5.7 6.8 4.1 4.1 2.1 3.7 6.0 4.8 4.9 4.6 5.6 56.3
Source: NOAA
Climate data for Mauna Loa slope observatory 3,400 meters (11,150 feet) (1981–2010 normals, extremes 1955–present)
Month Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec Year
Record high °F (°C) 67
(19)
69
(21)
66
(19)
67
(19)
68
(20)
71
(22)
70
(21)
69
(21)
78
(26)
68
(20)
65
(18)
67
(19)
78
(26)
Mean maximum °F (°C) 59.7
(15.4)
59.2
(15.1)
59.3
(15.2)
61.0
(16.1)
62.5
(16.9)
64.9
(18.3)
65.0
(18.3)
64.9
(18.3)
64.1
(17.8)
62.2
(16.8)
60.2
(15.7)
59.6
(15.3)
67.2
(19.6)
Mean daily maximum °F (°C) 51.9
(11.1)
51.2
(10.7)
51.9
(11.1)
53.2
(11.8)
55.8
(13.2)
58.5
(14.7)
57.5
(14.2)
57.9
(14.4)
56.7
(13.7)
55.7
(13.2)
53.2
(11.8)
52.0
(11.1)
54.6
(12.6)
Daily mean °F (°C) 43.6
(6.4)
42.4
(5.8)
43.1
(6.2)
44.3
(6.8)
47.1
(8.4)
49.3
(9.6)
48.6
(9.2)
49.1
(9.5)
48.1
(8.9)
47.3
(8.5)
46.1
(7.8)
44.1
(6.7)
46.1
(7.8)
Mean daily minimum °F (°C) 35.3
(1.8)
33.7
(0.9)
34.2
(1.2)
35.3
(1.8)
38.4
(3.6)
40.2
(4.6)
39.6
(4.2)
40.2
(4.6)
39.4
(4.1)
38.8
(3.8)
38.9
(3.8)
36.2
(2.3)
37.5
(3.1)
Mean minimum °F (°C) 28.1
(−2.2)
27.3
(−2.6)
28.5
(−1.9)
29.8
(−1.2)
32.6
(0.3)
34.6
(1.4)
34.4
(1.3)
35.4
(1.9)
34.3
(1.3)
33.7
(0.9)
32.0
(0.0)
28.7
(−1.8)
25.4
(−3.7)
Record low °F (°C) 19
(−7)
18
(−8)
20
(−7)
23
(−5)
27
(−3)
28
(−2)
26
(−3)
28
(−2)
29
(−2)
27
(−3)
25
(−4)
21
(−6)
18
(−8)
Average precipitation inches (mm) 2.48
(63)
1.51
(38)
1.75
(44)
1.33
(34)
1.00
(25)
0.51
(13)
1.16
(29)
1.50
(38)
1.36
(35)
1.16
(29)
1.78
(45)
2.01
(51)
17.55
(446)
Average snowfall inches (cm) 0.0
(0.0)
1.0
(2.5)
0.3
(0.76)
1.3
(3.3)
0.0
(0.0)
0.0
(0.0)
0.0
(0.0)
0.0
(0.0)
0.0
(0.0)
0.0
(0.0)
0.0
(0.0)
1.0
(2.5)
3.7
(9.4)
Average precipitation days (≥ 0.01 in) 4 5 6 5 4 3 4 5 5 5 5 4 55
Source 1: NOAA
Source 2: Western Climate Center (precipitation and snow 1955–2005)
Graphs are unavailable due to technical issues. Updates on reimplementing the Graph extension, which will be known as the Chart extension, can be found on Phabricator and on MediaWiki.org.

See or edit raw graph data.

Observatories

Atmospheric CO2 concentrations measured at the Mauna Loa Observatory.

The location of Mauna Loa has made it an important location for atmospheric monitoring by the Global Atmosphere Watch and other scientific observations. The Mauna Loa Solar Observatory (MLSO), located at 11,155 feet (3,400 m) on the northern slope of the mountain, has long been prominent in observations of the Sun. The NOAA Mauna Loa Observatory (MLO) is located close by. From its location well above local human-generated influences, the MLO monitors the global atmosphere, including the greenhouse gas carbon dioxide. Measurements are adjusted to account for local outgassing of CO2 from the volcano.

The Yuan-Tseh Lee Array for Microwave Background Anisotropy (AMiBA) sits at an elevation of 11,155 feet (3,400 m). It was established in October 2006 by the Academia Sinica Institute of Astronomy and Astrophysics (ASIAA) to examine cosmic microwave background radiation.

See also

Notes

  1. occurring on or near the Earth's land surface as opposed to submarine (below the sea), sub-glacial (below a glacier), etc.

References

  1. ^ "Mauna Loa". USGS. Retrieved December 19, 2023.
  2. "Mauna Loa, Hawaii". Peakbagger.com. Retrieved December 12, 2012.
  3. ^ "Mauna Loa". US Geological Survey. Retrieved January 29, 2022.
  4. ^ Brian Clark Howard (September 5, 2013). "New Giant Volcano Below Sea Is Largest in the World". National Geographic. Archived from the original on September 6, 2013.
  5. Kaye, G.D. (May 14, 2002). Using GIS to estimate the total volume of Mauna Loa Volcano, Hawaii. Geological Society of America. 98th Annual Meeting. Archived from the original on January 25, 2009. Retrieved August 5, 2007.
  6. ^ "Mauna Kea". NGS Station Datasheet. United States National Geodetic Survey. November 28, 2022.
  7. ^ Jicha, B.R.; Rhodes, J.M.; Singer, B.S.; Garcia, M.O. (2012). "40Ar/39Ar geochronology of submarine Mauna Loa volcano, Hawaii". Journal of Geophysical Research: Solid Earth. 117 (B9). doi:10.1029/2012JB009373.
  8. ^ "HAWAIIAN VOLCANO OBSERVATORY VOLCANO OBSERVATORY NOTICE FOR AVIATION Monday, November 28, 2022, 09:45 UTC | USGS Hazard Notification System (HANS) for Volcanoes". volcanoes.usgs.gov. November 27, 2022. Retrieved November 28, 2022.
  9. "Hawaii's Mauna Loa volcano erupts for first time in 38 years". The Washington Post. ISSN 0190-8286. Retrieved November 29, 2022.
  10. ^ David R. Sherrod; John M. Sinton; Sarah E. Watkins & Kelly M. Brunt (2007). "Geologic Map of the State of Hawai'i" (PDF). Open-File Report 2007–1089. United States Geological Survey. pp. 50–51. Retrieved December 9, 2012.
  11. ^ Watson, Jim (May 5, 1999). "The long trail of the Hawaiian hotspot". United States Geological Survey. Retrieved August 26, 2010.
  12. Foulger, G.R; Anderson, Don L. (March 11, 2006). "The Emperor and Hawaiian Volcanic Chains: How well do they fit the plume hypothesis?". MantlePlumes.org. Retrieved April 1, 2009.
  13. Clague, David A.; Dalrymple, G. Brent (1987). "The Hawaiian-Emperor Volcanic Chain – Geological Evolution" (PDF). Volcanism in Hawaii: papers to commemorate the 75th anniversary of the founding of the Hawaii Volcano Observatory. Professional Paper 1350. Vol. 1. United States Geological Survey. p. 32.
  14. Juvik, Sonia P.; Juvik, James O., eds. (1998). Atlas of Hawaiʻi (3rd ed.). University of Hawaiʻi Press. p. 44. ISBN 0-8248-2125-4. Hawaiʻi Island. Hawaiʻi consists of five coalescent, subaerial (above sea level) volcanoes...
  15. Sherrod, David R.; Sinton, James M.; Watkins, Sarah E.; Brunt, Kelly M. (2007). "Geologic Map of the State of Hawaiʻi" (PDF). Reston, Virginia: United States Geological Survey. p. 41.
  16. "Kīlauea: Geology and History". U.S. Geological Survey. Retrieved December 25, 2021.
  17. David A. Clague; David R. Sherrod (2014). "Growth and degradation of Hawaiian volcanoes". In Poland, Michael P.; Takahashi, T. Jane; Landowski, Claire M. (eds.). Characteristics of Hawaiian volcanoes, Professional Paper 1801 (PDF). Reston, VA: U.S. Geological Survey. p. 104.
  18. "Mauna Loa: Earth's Largest Volcano". Hawaiian Volcano Observatory – United States Geological Service. Retrieved January 29, 2022.
  19. W. J. Kious & R. I. Tilling (1996). "Hotspots": Mantle thermal plumes (1.14 ed.). United States Geological Survey. ISBN 978-0-16-048220-5. Retrieved December 9, 2012.
  20. "Evolution of Hawaiian Volcanoes". Hawaiian Volcano Observatory – United States Geological Survey. March 26, 1998. Retrieved January 29, 2022.
  21. Garcia, Michael O.; Tree, Jonathan P.; Wessel, Paul; Smith, John R. (July 15, 2020). "Pūhāhonu: Earth's biggest and hottest shield volcano". Earth and Planetary Science Letters. 542: 116296. Bibcode:2020E&PSL.54216296G. doi:10.1016/j.epsl.2020.116296. ISSN 0012-821X.
  22. Sager, William W.; Zhang, Jinchang; Korenaga, Jun; Sano, Takashi; Koppers, Anthony A. P.; Widdowson, Mike; Mahoney, John J. (September 6, 2013). "An immense shield volcano within the Shatsky Rise oceanic plateau, northwest Pacific Ocean". Nature Geoscience. 6 (11): 976–981. Bibcode:2013NatGe...6..976S. doi:10.1038/ngeo1934.
  23. ^ G. Macdonald & D. Hubbard (March 24, 2006) . "Mauna Loa, Fiery Colossus of the Pacific". National Park Service. Archived from the original on October 20, 2013. Retrieved December 9, 2012.
  24. Rubin, Ken; Minicola, Rochelle (March 20, 2009). "Mauna Loa Volcano". Hawaiian Volcano Observatory – United States Geological Survey. Retrieved December 12, 2012.
  25. Navin Singh Khadka (February 28, 2012). "Nepal in new bid to finally settle Mount Everest height". BBC News. Retrieved December 10, 2012.
  26. J.G. Moore (1987). "Subsidence of the Hawaiian Ridge". Volcanism in Hawaii: Geological Survey Professional Paper. 1350 (1).
  27. "How High is Mauna Loa?". Hawaiian Volcano Observatory – United States Geological Survey. August 20, 1998. Retrieved February 5, 2013.
  28. Claude Herzberg (November 30, 2006). "Petrology and thermal structure of the Hawaiian plume from Mauna Kea volcano". Nature. 444 (7119). Nature Publishing Group: 605–09. Bibcode:2006Natur.444..605H. doi:10.1038/nature05254. PMID 17136091. S2CID 4366221.
  29. ^ "When did Moku'aweoweo (the summit caldera of Mauna Loa) form?". Hawaiian Volcano Observatory – United States Geological Survey. March 28, 2001. Retrieved December 11, 2012.
  30. "Place Names of Hawaii – Moku-ʻāweoweo". Ulukau – Hawaiian Electronic Library. Archived from the original on December 28, 2012. Retrieved December 11, 2012.
  31. ^ Peter W. Lipman (1980). "The Southwestern Rift Zone of Mauna Kea: Implications for Structural Evolution of Hawaiian Volcanoes". American Journal of Science. 280-A. American Journal of Science: 752–76.
  32. ^ Amelung, F.; Yun, S.H.; Walter, T.R.; Segall, P.; Kim, S.W. (May 18, 2007). "Stress Control of Deep Rift Intrusion at Mauna Loa Volcano, Hawaii". Science. 316 (5827). American Association for the Advancement of Science: 1026–30. Bibcode:2007Sci...316.1026A. doi:10.1126/science.1140035. PMID 17510364. S2CID 39726145.
  33. "What's up with Mauna Loa?". Hawaiian Volcano Observatory – United States Geological Survey. October 23, 2001. Archived from the original on September 19, 2012. Retrieved December 16, 2012.
  34. ^ E. W. Wolfe; W. S. Wise; G. B. Dalrymple (1997). The geology and petrology of Mauna Kea volcano, Hawaii : a study of postshield volcanism. Professional Paper 1557. United States Geological Survey. Archived from the original on June 15, 2011. Retrieved December 12, 2012.
  35. E. C. Cannon & R. R. Bürgmann (October 26, 2009). "Complete Report for Mauna Kea Volcano (Class B) No. 2601". United States Geological Survey. Archived from the original on March 5, 2012. Retrieved December 12, 2012.
  36. "Rift Zones". Oregon State University. Retrieved December 13, 2012.
  37. "Volcano in Moonlight". NOIRLab. Retrieved December 26, 2022.
  38. "Inflation of Mauna Loa Volcano slows". Volcano Watch. Hawaiian Volcano Observatory – United States Geological Survey. January 28, 2003. Retrieved January 30, 2012.
  39. ^ Ken Hon. "Giant Landslides: Kilauea and Mauna Loa: GEOL 205: Lecture Notes". University of Hawaii at Hilo. Retrieved December 16, 2012.
  40. "Glaciers on Mauna Kea? You crazy? In the middle of the Pacific? YES!". Hawaiian Volcano Observatory – United States Geological Survey. October 22, 2007. Retrieved December 16, 2012.
  41. ^ "Eruption History". Hawaiian Volcano Observatory – United States Geological Survey. February 2, 2006. Archived from the original on August 19, 2007. Retrieved December 16, 2012.
  42. ^ Rubin, Ken; Minicola, Rochelle (March 7, 2007). "Mauna Loa Eruption History". Hawaii Center for Volcanology. Retrieved December 12, 2012.
  43. "Eruption History: A Cyclic Eruption Model is Proposed". HVO. March 16, 1998. Archived from the original on August 21, 2007. Retrieved December 25, 2012.
  44. Lockwood J.P. (1995), "Mauna Loa eruptive history – the preliminary radiocarbon record", in Rhodes, J.M. and Lockwood, J.P. (eds.), Mauna Loa revealed: structure, composition, history, and hazards, Washington D.C., American Geophysical Union Monograph 92, pp. 81–94.
  45. "Eruption History of Mauna Loa Volcano". United States Geological Survey, Hawaiian Volcano Observatory. Archived from the original on August 19, 2007. Retrieved July 28, 2007.
  46. "Eruption History: A Cyclic Eruption Model is Proposed". United States Geological Survey, Hawaiian Volcano Observatory. March 16, 1998. Archived from the original on August 21, 2007. Retrieved July 28, 2007.
  47. ^ "Summary of Historical Eruptions, 1843–Present". Hawaiian Volcano Observatory – United States Geological Survey. September 17, 2004. Archived from the original on August 13, 2007. Retrieved January 24, 2013.
  48. "Mauna Loa: Eruptive History". Global Volcanism Program. Smithsonian Institution. Retrieved January 24, 2013.
  49. ^ Russell A. Apple. "Mauna Loa". Hawaiian Volcano Observatory – United States Geological Survey. Retrieved January 26, 2013.
  50. ^ John Watson (July 18, 1997). "Lava Flow Hazard Zone Maps: Mauna Loa". United States Geological Survey. Archived from the original on January 15, 2013. Retrieved December 12, 2012.
  51. "The Great Ka'u Earthquake of 1868". Hawaiian Volcano Observatory – United States Geological Survey. March 26, 1998. Retrieved January 24, 2013.
  52. "Eruptions of Hawaiian Volcanoes". United States Geological Survey. January 5, 1997. Retrieved January 24, 2013.
  53. ^ "50th Anniversary of Mauna Loa's Most Spectacular Eruption". Hawaiian Volcano Observatory – United States Geological Survey. September 17, 2004. Archived from the original on January 30, 2013. Retrieved January 24, 2013.
  54. Scientific American. Munn & Company. August 13, 1881. p. 106.
  55. ^ "The Mauna Loa Eruption of 1926". Hawaiian Volcano Observatory – United States Geological Survey. March 26, 1998. Retrieved January 26, 2013.
  56. "Lava diversion in Hawai'i?". Hawaiian Volcano Observatory – United States Geological Survey. Retrieved January 24, 2013.
  57. "Shhh! Don't tell there is an eruption – Eruption of 1942". Hawaiian Volcano Observatory – United States Geological Survey. April 27, 1998. Retrieved January 24, 2013.
  58. "The 1950 eruption of Mauna Loa: a nightmare that could reoccur". Hawaiian Volcano Observatory – United States Geological Survey. May 14, 2001. Retrieved February 2, 2021.
  59. "The Mauna Loa Eruption of 1984". Hawaiian Volcano Observatory – United States Geological Survey. March 26, 1998. Retrieved January 24, 2013.
  60. "1984 Eruption: March 25 – April 15". Hawaiian Volcano Observatory – United States Geological Survey. September 17, 2004. Archived from the original on January 31, 2013. Retrieved January 24, 2013.
  61. Gordon A. Macdonald; Douglass H. Hubbard (March 24, 2006). "Volcanoes of the National Parks of Hawaii". National Park Service. Retrieved January 24, 2013.
  62. "Volcano Watch — When will Mauna Loa erupt next?". U.S. Geological Survey. February 25, 2021.
  63. "HAWAIIAN VOLCANO OBSERVATORY VOLCANO OBSERVATORY NOTICE FOR AVIATION Monday, November 28, 2022, 17:20 UTC USGS Hazard Notification System (HANS) for Volcanoes". volcanoes.usgs.gov. Retrieved November 29, 2022.
  64. "HAWAIIAN VOLCANO OBSERVATORY STATUS REPORT Tuesday, November 29, 2022, 02:55 UTC USGS Hazard Notification System (HANS) for Volcanoes". volcanoes.usgs.gov. Retrieved November 30, 2022.
  65. "HAWAIIAN VOLCANO OBSERVATORY VOLCANO ACTIVITY NOTIFICATION Sunday, December 11, 2022, 00:35 UTC USGS Hazard Notification System (HANS) for Volcanoes". volcanoes.usgs.gov. Retrieved December 11, 2022.
  66. "HAWAIIAN VOLCANO OBSERVATORY VOLCANO OBSERVATORY NOTICE FOR AVIATION Tuesday, December 13, 2022, 17:17 UTC USGS Hazard Notification System (HANS) for Volcanoes". volcanoes.usgs.gov. Retrieved December 16, 2022.
  67. International Association of Volcanology and Chemistry of the Earth's Interior (1998). "Decade Volcanoes". Cascades Volcano Observatory. United States Geological Survey. Retrieved January 25, 2013.
  68. Nick Varley. "Decade Volcano Program IDNDR – IAVCEI – 1990/2000". Société Volcanologique Européenne. Retrieved January 25, 2013.
  69. John Watson (July 18, 1997). "Volcanic and seismic hazards on the island of Hawaii". United States Geological Survey. Archived from the original on January 15, 2013. Retrieved January 25, 2013.
  70. "How Volcanoes Work: Hawaiian Eruptions". San Diego State University. Retrieved January 25, 2013.
  71. "Lava flow hazards on Mauna Loa volcano". Hawaiian Volcano Observatory – United States Geological Survey. February 2, 2006. Retrieved January 25, 2013.
  72. Robert and Barbara Decker (1997). Volcanoes (3rd ed.). New York: W.H. Freeman & Co, Ltd. ISBN 978-0-7167-3174-0.
  73. Cannon, Eric C.; Bürgmann, Roland; Owen, Susan E. (2001). "Shallow Normal Faulting and Block Rotation Associated with the 1975 Kalapana Earthquake, Kilauea'". Bulletin of the Seismological Society of America. 91 (6). Seismological Society of America: 1553. Bibcode:2001BuSSA..91.1553C. doi:10.1785/0120000072.
  74. Russell A. Apple (January 4, 2005). "Thomas A. Jaggar, Jr., and the Hawaiian Volcano Observatory". Hawaiian Volcano Observatory – United States Geological Survey. Archived from the original on June 14, 2009. Retrieved January 26, 2013.
  75. "HVO Seismic Network". Hawaiian Volcano Observatory – United States Geological Survey. June 18, 2001. Retrieved January 26, 2013.
  76. ^ "Long-term Monitoring Data". Hawaiian Volcano Observatory – United States Geological Survey. Archived from the original on February 17, 2013. Retrieved January 26, 2013.
  77. "Mauna Loa Volcano, Hawai'i : Current Monitoring". Hawaiian Volcano Observatory – United States Geological Survey. Archived from the original on February 17, 2013. Retrieved January 26, 2013.
  78. "Final Environmental Statement for the Outrigger Telescopes Project: Volume II" (PDF). NASA. February 2005. p. C–9. Archived from the original (PDF) on April 21, 2009. Retrieved September 4, 2012.
  79. "Culture: The First Arrivals: Native Hawaiian Uses" (PDF). Mauna Kea Mountain Reserve Master Plan. University of Hawaii. Archived from the original (PDF) on October 11, 2012. Retrieved September 2, 2012.
  80. Kirch, Patrick V. (January 1982). "The Impact of the Prehistoric Polynesians on the Hawaiian Ecosystem". Pacific Science. 36 (1). University of Hawaiʻi Press: 1–14. hdl:10125/406. Retrieved September 2, 2012.
  81. Athens, Stephen; Tuggle, H. David; Ward, Jerome V.; Welch, David J. (2002). "Avifaunal Extinctions, Vegetation Change and Polynesian Impacts in Prehistoric Hawai'i". Archaeology in Oceania. 37 (2): 57. doi:10.1002/j.1834-4453.2002.tb00507.x. Archived from the original on June 5, 2012. Retrieved September 4, 2012.
  82. Caitlin Kelly. "Information on the Mauna Loa Volcano in Hawaii". USA Today. Retrieved January 27, 2013.
  83. Ken Hon. "Hawaiian Oral History related to Geology". University of Hawaii at Hilo. Retrieved January 27, 2013.
  84. R. W. Decker; et al., eds. (1987). Volcanism in Hawaii: papers to commemorate the 75th anniversary of the founding of the Hawaii Volcano Observatory (PDF). United States Geological Survey Professional Paper, 1350. Vol. 1. United States Geological Survey. Archived from the original (PDF) on October 10, 2012. Retrieved September 2, 2012.
  85. ^ Russell A. Apple (August 20, 1974). "National Register Of Historic Places Inventory – Nomination Form for Federal Properties – Ainapo Trail" (PDF). National Park Service. Archived from the original (PDF) on September 29, 2012. Retrieved January 27, 2013.
  86. Rick Warshauer (October 2005). "The Proposed Mauka Trails System: The Roles and History of Trails on the Big Island". The Nature Conservancy. Retrieved January 27, 2013.
  87. ^ Walther M. Barnard (1991). "Earliest Ascents of Mauna Loa Volcano, Hawai'i" (PDF). Hawaiian Journal of History. 25. Hawaiian Historical Society, Honolulu. hdl:10524/599.
  88. ^ Roberta A. Sprague (1991). "Measuring the Mountain: the United States Exploring Expedition on Mauna Loa, 1840–1841" (PDF). Hawaiian Journal of History. 25. Hawaiian Historical Society. hdl:10524/359.
  89. Charles Wilkes (1849). Narrative of the United States Exploring Expedition. Vol. IV. G. P. Putnam. pp. 111–162.
  90. ^ Russell A. Apple (1973). "Wilkes Campsite Nomination form". National Register of Historic Places. National Park Service.
  91. "National Register Information System". National Register of Historic Places. National Park Service. March 13, 2009.
  92. Historic Places in Hawaii County on official state web site
  93. "NOAA Mauna Loa Observatory". National Oceanic and Atmospheric Administration web site. Retrieved July 4, 2009.
  94. Rubin, Ken; Minicola, Rochelle (2004). "Mauna Loa Flora and Climate". Hawaii Center for Volcanology. Retrieved July 28, 2007.
  95. ^ "NowData – NOAA Online Weather Data". National Oceanic and Atmospheric Administration. Retrieved September 13, 2021.
  96. "U.S. Climate Normals Quick Access – Station: N POLE, AK US USC00506581". Archived from the original on June 10, 2023. Retrieved June 10, 2023.
  97. "Station: Mauna Loa Slope OBS 39, Hawaii". U.S. Monthly Climate Normals (1981–2010). National Oceanic and Atmospheric Administration. Archived from the original on December 3, 2021. Retrieved September 13, 2021.
  98. "Period of Record Monthly Climate Summary". MAUNA LOA SLOPE OBS, HAWAII. NOAA. Retrieved September 13, 2021.
  99. Rhodes, J.M. and Lockwood, J. P. (editors), (1995) Mauna Loa Revealed: Structure, Composition, History, and Hazards, Washington D.C., American Geophysical Union Monograph 92, p. 95
  100. "The Yuan Tseh Lee Array for Microwave Background Anisotropy (AMiBA)". ASIAA. May 12, 2012. Retrieved July 26, 2013.

External links

The 13 major summits of Hawaiʻi
  1. Mauna Kea
  2. Mauna Loa
  3. Haleakalā
  4. Hualālai
  5. Puʻu Kukui
  6. Kaunu o Kaleihoohie
  7. Kawaikini
  8. Kamakou
  9. Olokuʻi
  10. Kaʻala
  11. Lānaʻihale
  12. Kōnāhuanui
  13. Hāʻupu
Hawaiian volcanism topics (list)
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