Santa María (volcano)

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Santa María, Santiaguito
Santiaguito from Santamaria.jpg
Santiaguito side cone from the summit of Santa María
Highest point
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Coordinates Lua error in package.lua at line 80: module 'strict' not found.
Geography
Santa María, Santiaguito is located in Guatemala
Santa María, Santiaguito
Santa María, Santiaguito
Guatemala
Location Quetzaltenango Department, Guatemala
Parent range Sierra Madre
Geology
Mountain type Stratovolcano
Volcanic arc/belt Central America Volcanic Arc
Last eruption 1922 to present

Santa María Volcano is a large active volcano in the western highlands of Guatemala, in the Quetzaltenango Department near the city of Quetzaltenango.

The volcano was known by Gagxanul in the local K'iche' language, before the 16th century Spanish Conquest of the region.[1]

The eruption of Santa María Volcano in 1902 (VEI 6) was one of the three largest eruptions of the 20th century, after the 1912 Novarupta and 1991 Pinatubo eruptions. It is also one of the five biggest eruptions of the past 200 (and probably 300) years.[2]

Geological history

Santa María Volcano is part of the Sierra Madre range of volcanoes, which extends along the western edge of Guatemala, separated from the Pacific Ocean by a broad plain. The volcanoes are formed by the subduction of the Cocos Plate under the Caribbean Plate, which led to the formation of the Central America Volcanic Arc.

Eruptions at Santa María are estimated to have begun about 30,000 years ago. For several thousand years, eruptions seem to have been small and frequent, building up the large cone of the volcano, reaching about 1,400 metres (4,600 ft) above the plain on which the nearby city of Quetzaltenango sits. Following the cone-building eruptions, activity seems to have changed to a pattern of long periods of repose followed by the emission of small lava flows from vents on the mountain.

1902 eruption

Steam rises from Santiaguito. The area of the flank destroyed by the 1902 eruption can be clearly seen. Lahar deposits snake down river valleys to the left of the image
Santa María, 1902 eruption
The volcano as seen from the nearby city of Quetzaltenango

The first eruption of Santa María in the recorded history occurred in October 1902. Before 1902 the volcano had been dormant for at least 500 years and possibly several thousand years, but its awakening was clearly indicated by a seismic swarm in the region starting in January 1902, which included a major earthquake in April 1902. The eruption began on 24 October, and the largest explosions occurred over the following two days, ejecting an estimated 5.5 cubic kilometres (1.3 cu mi) of magma. The eruption was one of the largest of the 20th century, only slightly less in magnitude to that of Mount Pinatubo in 1991. The eruption had a VEI of 6, thus being 'Colossal'.[3]

The pumice formed in the climactic eruption fell over an area of about 273,000 square kilometres (105,000 sq mi), and volcanic ash was detected as far away as San Francisco, 4,000 kilometres (2,500 mi) away. The eruption tore away much of the south-western flank of the volcano, leaving a crater about Lua error in Module:Convert at line 1851: attempt to index local 'en_value' (a nil value). in diameter and about 300 metres (980 ft) deep, stretching from just below the summit to an elevation of about 2,300 metres (7,500 ft). The first evidence of the eruption was a sprinkling of sand on Quezaltenango. The wind then changed from the south to the east and ashes began to fall at Helvetia, a coffee plantation six miles to the South-West.[4]

Because of the lack[3] of previous Holocene activity at Santa María, local people did not recognise the preceding seismicity as warning signs of an eruption. At least 5,000 people died as a result of the eruption itself, and a subsequent outbreak of malaria killed many more.

1902 eruption sequence of events[5]
Day Hour Event
24 October 5:00 pm At San Felipe a horrible sound was heard, similar to the roar of a waterfall for five minutes, coming from the volcano; but the mist surrounding the volcano did not allow any direct observation of what was happening.
6:00 pm Cinders and ashes started falling over Quetzaltenango
7:00 pm Witnesses recall seeing lightning and a strong light coming from the volcano, along with noise similar of that of an industrial oven.
8:00 pm From San Felipe one could see a giant plume of black ash with numerous fierce twisters crossed by thousands of lighnint bolts and curved lines of green or red light. All the area surrounding the volcano kept shaking and large explosions could be heard as far as 160 km away; strong winds carried ash and debris as far as 800 km away, or even more; a part of the cloud hovered on the North side of the cone for days, and a pitch black darkness ensued.
25 October 1:00 am The eruption violence increased and large rocks from the volcano started falling as far as 14 km away, destroying towns and farm houses.
26 October 12:00 am The volcano calmed down
3:00 pm Another eruption took place, but this time it was a white plume that came out, which was likely composed of water vapor.

Image gallery

In the middle of the disaster, Quetzaltenango regional authorities had to take charge, as the central government was focused on the celebration of the "Fiestas Minervalias", the largest propaganda festival of president Manuel Estrada Cabrera' regime; furthermore, the central government was so focused on the festival that it tried to minimize the impact of the eruption and went as far as tell the citizens that it was not in Guatemalan soil, but in México.[6] Furthermore, the official government response was to tell Quetzaltenango authorities that there were no funds for the recovery, as those were already spent to help after the April 1902 earthquake.[7] Under such circumstances, Quetzaltenango regional authorities declared that all the West zone agricultural harvest was ruined, and forecasted famine due to food shortages; likewise, cattle was dying and there were meat shortages as well. Fortunately, they were allowed by the central government to import flour free of taxes for the next few months.[5]

For the native people the eruption consequences were catastrophic: they not only lost relatives, friends, homes and harverst, but they were also forced to work free of charge in the recovery while "criollo" landlors were compensated by the loss with lands that were confiscated from native communities in San Miguel Uspantán Quiché Department, Panam in Suchitepéquez Department and in Sololá Department.[5]

In the United States, the first accounts of the disaster appeared on 13 November 1902, when both the San Francisco Call and the San Francisco Chronicle issued testimonies of survivors who had arrived in small boats from Guatemala.

Santiaguito

Santiaguito, 2003 eruption [1]

The 1902 eruption was followed by 20 years of dormancy. In 1922, new eruptions began, with the extrusion of a lava dome in the crater left by the 1902 eruption. The lava dome was dacitic in composition[8]

The dome growth has been both 'exogenous and endogenous. Activity has been concentrated at several different vents, and Santiaguito now has the appearance of several overlapping domes. The currently active vent is El Caliente.[8] There are three other domes - El Brujo, El Mitad and El Monje.[9]

Although most of Santiaguito's eruptive activity has been relatively gentle, occasional larger explosions have occurred. In 1929, part of the dome collapsed, generating pyroclastic flows which killed anywhere from several hundred up to 5,000 people.[10] Occasional rockfalls have generated smaller pyroclastic flows, and vertical eruptions of ash to heights of a few kilometres above the dome are common.

Volcanic hazards at Santa María

A hot lahar rushes down a river valley near El Palmar in 1989

The areas to the south of Santa María are considerably affected by volcanic activity at Santiaguito. Currently, the most common volcanic hazards at Santa María are lahars, which frequently occur in the rainy season due to heavy rainfall on loose volcanic deposits. The town of El Palmar, Lua error in Module:Convert at line 1851: attempt to index local 'en_value' (a nil value). from Santiaguito, has been destroyed twice by lahars from Santiaguito forcing the town to be moved to the present Nuevo El Palmar, and infrastructure such as roads and bridges have been repeatedly damaged. Lahar deposits from Santiaguito have affected rivers all the way downstream to the Pacific Ocean.

Lava flows do not occur frequently from Santiaguito, and tend to stretch no more than a few kilometres from the dome. The magma at Santiaguito is rich in silica and is thus highly viscous. Lava flows are therefore slow-moving and are of little danger to human life, although property damage may occur. Fast-moving pyroclastic flows can occur, and these may travel several kilometres from the dome.

One hazard which could be devastating is the collapse of Santa María itself. The 1902 crater has left the southern flank of the mountain above Santiaguito highly over-steepened, and a large earthquake or eruption from Santiaguito could trigger a huge landslide, which might cover up to 100 square kilometres (39 sq mi). However, this is thought to be unlikely in the short term.

In light of the threat it poses to nearby populations, Santa María has been designated a Decade Volcano, identifying it as a target for particular study by volcanologists to mitigate any future natural disasters at the volcano.

See also

References

Notes
  1. Recinos 1952, 1986, p.69.
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  3. 3.0 3.1 Lua error in package.lua at line 80: module 'strict' not found.
  4. Lua error in package.lua at line 80: module 'strict' not found.
  5. 5.0 5.1 5.2 Aragón 2013.
  6. Arévalo Martínez 1945, p. 64.
  7. Arévalo Martínez 1945, p. 67.
  8. 8.0 8.1 http://www.volcano.si.edu/world/volcano.cfm?vnum=1402-03=
  9. http://www.volcano.si.edu/world/volcano.cfm?vnum=1402-03=&volpage=synsub
  10. Sapper & Termer, 1930
Bibliography
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  • Bunzendahl, E.; Bluth, G. J.; Rose, W. I.; Reif, S. L.; Matias, O. (2001), Developing a Long-term Hazard Mitigation Plan for Consequent Volcanic Sedimentation Hazards at Santiaguito Dome Complex, Guatemala, American Geophysical Union, Fall Meeting 2001, abstract #V41A-0974
  • Harris, A. J.; Flynn, L. P.; Rose, W. I.; Matias, O.; Cornejo, J. (2002), The extrusion of lava dome and block lava flow units at Santiaguito, 1922-2002, American Geophysical Union, Fall Meeting 2002, abstract #V12A-1399
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External links