Sunday, May 8, 2011

St. Helens observatory reopens next week

The Olympian: St. Helens observatory reopens next week
Johnston Ridge Observatory at Mount St. Helens National Volcanic Monument will reopen for the season May 15, with several new exhibits and a new outdoor amphitheater.
IF YOU GO
Hours: The visitor center will be open daily 10 a.m.-6 p.m. through October.

Admission: The cost to enter Johnston Ridge and Coldwater Lake is $8 per person for people 16 and older, children 15 and younger are free.

Website: The monument earlier this year debuted a new website, www.fs.usda.gov/mountsthelens.

Anniversary celebration: For the 31st anniversary of the eruption, admission to Johnston Ridge Observatory and Coldwater Lake will be free May 18.

Information: Additional information about access to the Mount St. Helens National Volcanic Monument and roads blocked by snow can be obtained online or by calling 360-449-7800.

Inside the visitor center, people will be able to use new touch-screen exhibits that tell the story of how the volcano and surrounding landscape have recovered since the 1980 eruption.

A newly remodeled high-definition theater with surround sound will enhance the movie-viewing experience, said monument spokesman Ken Sandusky. In addition, a new movie will make its debut sometime this summer.

Also making its debut this summer will be the outdoor amphitheater. It is on the hill to the west-southwest of the observatory.

“It’s a place for interpreters to give their presentations. It’s a pretty big facility, and could seat a couple of hundred people,” monument spokesman Ken Sandusky said. “That will be one of the neatest things this summer.”

The new touch-screen exhibits will offer information on the blast zone recovery and the return of life in the area, Sandusky said.

There also will be new interpretive signs across the monument.

“Some of the ones you couldn’t read last year because of weathering, will be fresh, with new stories this year, creating a new vivid experience,” Sandusky said.

“All the new interpretive information and displays telling the Return to Life story makes this year especially exciting,” monument manager Tom Mulder said in a prepared statement.

Complicating access across much of the monument will be the weather. Late-season snow means many roads might open later than usual.

“Road 99 to Windy Ridge won’t be open for quite some time,” Sandusky said of the main access point on the monument’s east side. “There will be a lot of access issues because of snow across the (Gifford Pinchot National Forest).”

Thursday, May 5, 2011

Volcanology

Volcanology (also spelled vulcanology) is the study of volcanoes, lava, magma, and related geological, geophysical and geochemical phenomena. The term volcanology is derived from the Latin word vulcan. Vulcan was the ancient Roman god of fire.

A volcanologist is a person who studies the formation of volcanoes, and their current and historic eruptions. Volcanologists frequently visit volcanoes, especially active ones, to observe volcanic eruptions, collect eruptive products including tephra (such as ash or pumice), rock and lava samples. One major focus of enquiry is the prediction of eruptions; there is currently no accurate way to do this, but predicting eruptions, like predicting earthquakes, could save many lives.

History of volcanology
The earliest known recording of a volcanic eruption may be on a wall painting dated to about 7000 BCE found at the Neolithic site at Çatal Höyük (now known as Çatalhöyük), in Anatolia, Turkey. This painting has been interpreted as a depiction of an erupting volcano, with a cluster of houses below shows a twin peaked volcano in eruption, with a town at its base (though archaeologists now question this interpretation. The volcano may be either Hasan Dağ, or its smaller neighbour, Melendiz Dağ.

Mythical explanationsThe classical world of Greece and the early Roman Empire explained volcanoes as the work of the gods as science and alchemy had no explanation for their existence. Grecian myths and tales tell of Atlantis, a fabled island that sank into the sea. Plato (428-348 BCE) told of the disappearance of a vast island and its powerful civilization, the Atlanteans, in two of his dialogues, Critias and Timaeus.

It is now considered that the island of Thera, now Santorini, in the Aegean Sea, was destroyed by a tremendous series of volcanic explosions around 1620 BCE, with ash falls of up to a foot deep recorded in Turkey. The explosion of Thera sent colossal tsunamis, estimated at 100 feet height, racing across the Aegean, and the southern coast of Crete. Other recordings of the Thera eruption spawned Greek myths, namely the Deucalion, in which Poseidon, god of the sea, took revenge upon Zeus by inundating Attica, Argolis, Salonika, Rhodes and the coast of Lycia (Turkey) to Sicily.

Greeks also considered that Hephaestus, the god of fire, sat below the volcano Etna, forging the weapons of Zeus. His minions, the cyclops with their single staring eye, may be an allegory to the round craters and cones of a volcano. Indeed, the Greek word used to describe volcanoes was etna, or hiera, after Heracles, the son of Zeus. The Roman poet Virgil, in interpreting the Greek mythos, held that the hero Enceladus was buried beneath Etna by the goddess Athena as punishment for disobeying the gods; the mountain's rumblings were his tormented cries, the flames his breath and the tremors his railing against the bars of his prison. Enceladus' brother Mimas was buried beneath Vesuvius by Hephaestus, and the blood of other defeated giants welled up in the Phlegrean Fields surrounding Vesuvius.

Tribal legends of volcanoes abound from the Pacific Ring of Fire and the Americas, usually invoking the forces of the supernatural or the divine to explain the violent outbursts of volcanoes. Taranaki and Tongariro, according to Māori mythology, were lovers who fell in love with Pihanga, and a spiteful jealous fight ensued. Māori will not to this day live between Tongariro and Taranaki for fear of the dispute flaring up again.

Greco-Roman science The first attempt at a scientific explanation of volcanoes was undertaken by the Greek philosopher Empedocles (c. 490-430 BCE), who saw the world divided into four elemental forces, of Earth, Air, Fire and Water. Volcanoes, Empedocles maintained, were the manifestation of Elemental Fire. Plato contended that channels of hot and cold waters flow in inexhaustible quantities through subterranean rivers. In the depths of the earth snakes a vast river of fire, the Pyriphlegethon, which feeds all the world's volcanoes. Aristotle considered underground fire as the result of "the...friction of the wind when it plunges into narrow passages."

Wind played a key role in volcano explanations until the 16th century. Lucretius, a Roman philosopher, claimed Etna was completely hollow and the fires of the underground driven by a fierce wind circulating near sea level. Ovid believed that the flame was fed from "fatty foods" and eruptions stopped when the food ran out. Vitruvius contended that sulfur, alum and bitumen fed the deep fires. Observations by Pliny the Elder noted the presence of earthquakes preceded an eruption; he died in the eruption of Vesuvius in 79 CE while investigating it at Stabiae. His nephew, Pliny the Younger gave detailed descriptions of the eruption in which his uncle died, attributing his death to the effects of toxic gases. Such eruptions have been named Plinian in honour of the two authors.

Christian mythology
The study of volcanology was not advanced much between the days of Plato and Hutton. The Christian world explained volcanoes by a multitude of prescientific notions, but it was also thought they were the work of Satan or the wrath of God, and only saintly miracles could avert their wrath. For this reason the relics of Saint Agatha were paraded in front of lava advancing on Catania in 253 CE, and miraculously the lava clove in two (down two valleys) and spared the town. Unfortunately the relics of St. Agatha proved ineffective in 1669, with the loss of much of Catania to Etna's lava.

In 1660 the eruption of Vesuvius rained twinned pyroxene crystals and ash upon the nearby villages. The twinned pyroxene crystals resembled the crucifix and this was interpreted as the work of Saint Januarius. In Naples, the relics of St Januarius are paraded through town at every major eructation of Vesuvius. The register of these processions allowed British diplomat and amateur naturalist Sir William Hamilton to document Vesuvius' eruptions, one of the first few 'scientific' studies of the eruptive history of a volcano.

Renaissance observations
Renaissance descriptions of volcanoes vastly improved the state of knowledge, despite the resistance of the Church to scientific explorations of the natural world, especially those at odds with Biblical teachings. Nevertheless, nuées ardentes were described from the Azores in 1580. Georgius Agricola argued the rays of the sun, as later proposed by Descartes had nothing to do with volcanoes. Agricola believed vapor under pressure caused eruptions of 'mointain oil' and basalt.

Jesuit Athanasius Kircher (1602–1680) witnessed eruptions of Mount Etna and Stromboli, then visited the crater of Vesuvius and published his view of an Earth with a central fire connected to numerous others caused by the burning of sulfur, bitumen and coal.

Johannes Kepler considered volcanoes as conduits for the tears and excrement of the Earth, voiding bitumen, tar and sulfur. Descartes, pronouncing that God had created the Earth in an instant, declared he had done so in three layers; the fiery depths, a layer of water, and the air. Volcanoes, he said, were formed where the rays of the sun pierced the earth.

Science wrestled with the ideas of the combustion of pyrite with water, that rock was solidified bitumen, and with notions of rock being formed from water (Neptunism). Of the volcanoes then known, all were near the water, hence the action of the sea upon the land was used to explain volcanism.

Modern volcanology
Volcanologist examining tephra horizons in south-central Iceland.Seismic observations are made using seismographs deployed near volcanic areas, watching out for increased seismicity during volcanic events, in particular looking for long period harmonic tremors, which signal magma movement through volcanic conduits.[3]

Surface deformation monitoring includes the use of geodetic techniques such as leveling, tilt, strain, angle and distance measurements through tiltmeters, total stations and EDMs. This also includes GNSS observations and InSAR.[4] Surface deformation indicates magma upwelling: increased magma supply produces bulges in the volcanic center's surface.

Gas emissions may be monitored with equipment including portable ultra-violet spectrometers (COSPEC, now superseded by the miniDOAS), which analyzes the presence of volcanic gases such as sulfur dioxide; or by infra-red spectroscopy (FTIR). Increased gas emissions, and more particularly changes in gas compositions, may signal an impending volcanic eruption.[3]

Temperature changes are monitored using thermometers and observing changes in thermal properties of volcanic lakes and vents, which may indicate upcoming activity.

Satellites are widely used to monitor volcanoes, as they allow a large area to be monitored easily. They can measure the spread of an ash plume, such as the one from Eyjafjallajokull's 2010 eruption, as well as SO2 emissions. InSAR and thermal imaging can monitor large, scarcely populated areas where it would be too expensive to maintain instruments on the ground.

Other geophysical techniques (electrical, gravity and magnetic observations) include monitoring fluctuations and sudden change in resistivity, gravity anomalies or magnetic anomaly patterns that may indicate volcano-induced faulting and magma upwelling.

Stratigraphic analyses includes analyzing tephra and lava deposits and dating these to give volcano eruption patterns, with estimated cycles of intense activity and size of eruptions.

Tuesday, May 3, 2011

The Hawaiian Volcano Obsesrvatory

From Wikipedia
http://hvo.wr.usgs.gov/
The Hawaiian Volcano Observatory (HVO) is a volcano observatory located at Uwekahuna Bluff on the rim of Kīlauea Caldera on the Island of Hawaiʻi. The observatory monitors four active Hawaiian volcanoes: Kīlauea, Mauna Loa, Hualālai, and Haleakalā. Because Kīlauea and Mauna Loa are significantly more active than Hualālai and Haleakalā, much of the observatory's research is concentrated on the former two mountains. The observatory has a worldwide reputation as a leader in the study of active volcanism. Due to the relatively non-explosive nature of Hawaiian volcanic eruptions, scientists can study on-going eruptions in proximity without being in extreme danger. Located at the main site is the public Thomas A. Jaggar Museum.

History
Besides the oral history of Ancient Hawaiians, several early explorers left records of observations. Rev. William Ellis kept a journal of his 1823 missionary tour, and Titus Coan documented eruptions through 1881. Scientists often debated the accuracy of these descriptions. When prominent geologist Thomas Jaggar of the Massachusetts Institute of Technology gave a lecture in Honolulu in 1909, he was approached by businessman Lorrin A. Thurston (grandson of Asa Thurston who was on the 1823 missionary tour) about building a full-time scientific observatory at Kīlauea. The Hawaiian Volcano Research Association was formed by local businessmen for its support. George Lycurgus, who owned the Volcano House at the edge of the main caldera, proposed a site adjacent to his hotel and restaurant.

In 1911 and 1912, small cabins were built on the floor of the caldera next to the main active vent of Halemaʻumaʻu, but these were hard to maintain. MIT added $25,000 in support in 1912 from the estate of Edward and Caroline Whitney to build a more permanent facility.

The first instruments were housed in a cellar next to the Volcano House called the Whitney Laboratory of Seismology. Inmates from a nearby prison camp had excavated through 5.5 feet of volcanic ash. Massive reinforced concrete walls supported a small building built on top of the structure. Professor F. Omori of Japan, now best known for his study of aftershocks, designed the original seismometers. This seismograph vault (building number 29 on a site inventory) is state historic site 10-52-5506, and was added to the National Register of Historic Places on July 24, 1974 as site 74000292.

From 1912 until 1919, the observatory was run by Jaggar personally. Many important events were recorded, although as pioneers, the team often ran into major problems. For example, in 1913 an earthquake opened a crack in a wall and water seeped in. The windows meant to admit natural light caused the vault to heat up in the intense tropical sun. The opening of the national park in 1916 (at the urging of Thurston) brought more visitors to bother the scientists, but also park rangers who would take over public lectures. The prison that had supplied laborers was replaced by the Kīlauea Military Camp.

In 1919, Jaggar convinced the National Weather Service to take over operations at the observatory. In 1924, the observatory was taken over by the US Geological Survey and it has been run by the USGS ever since (except for a brief period during the Great Depression, when the observatory was run by the National Park Service). When the Volcano House hotel burned to the ground in 1940, the old building was torn down (although the instruments in the vault continued to be used until 1961).

George Lycurgus convinced friends in Washington D.C. (many of whom had stayed in the Volcano House) to build a larger building farther back from the cliff, so he could built a new larger hotel at the former HVO site. By 1942, the "Volcano Observatory and Naturalist Building" was designated number 41 on the park inventory. However, with the advent of World War II, it was commandeered as a military headquarters. HVO was allowed to use building 41 from October 1942 to September 1948, when it became the park headquarters (and still is today, after several additions).

About two miles west, in an area known as Uwekahuna, a "National Park Museum and Lecture Hall" had been built in 1927. The name means roughly "the priest wept" in the Hawaiian Language, which indicates it might have been used to make offerings in the past. The HVO moved there in 1948 after some remodeling of the building. This site was even closer to the main vent of Kīlauea. In 1985 a larger building was built for the observatory adjacent to the old lecture hall, which was turned back into a museum and public viewing site.

Today
Modern electronic equipment now monitors earthquakes from several sites. This information is provided immediately over the Internet, as well as live cameras covering the eruptions. Another important function of HVO is to monitor the sulphur emissions that produce the condition known as vog. The observatory advises the park service when to close areas due to dangerous hazards.

While the main Observatory building itself is not open to the public, the adjacent Thomas A. Jaggar Museum includes interpretive exhibits on the work done at the observatory. The exhibits from general information on volcanoes, and lava to the scientific equipment and clothing used by volcanologists. Some of the museum's windows provide a sheltered view of the Kīlauea Caldera and Halemaʻumaʻu Crater. A public observation deck overlooking Kīlauea provides spectacular views.

It a popular destination within Hawaii Volcanoes National Park, located at coordinates 19°25′12″N 155°17′16.8″W / 19.42°N 155.288°W / 19.42; -155.288, on Crater Rim Drive west from the visitors center.

Monday, May 2, 2011

Tacoma: Lahar siren test today spotlights Volcano Awareness Month

Just thought I'd share this to show what some communities that live near volcanoes do to prepare their citizenry.

Tacoma Daily Index: Lahar siren test today spotlights Volcano Awareness Month
On Mon., May 2 at noon, Pierce County Emergency Management will test its 17 outdoor lahar warning sirens in the Puyallup River Valley. Additionally, the cities of Fife, Orting and Puyallup will test their 10 older civil defense era sirens. To correspond with Volcano Awareness Month, some valley schools are coordinating evacuation drills along with the test.

May is designated as Volcano Awareness Month which coincides with the anniversary of the catastrophic eruptions of Mount St. Helens in May of 1980. Eruptions and lahars at Mount St. Helens took the lives of 57 people and caused billions of dollars in property damage.

Lahars (mudflows) from Mount Rainier are the primary hazard to developed areas in the valley including Orting, Sumner, Puyallup and Fife and this drill is a reminder of the actions residents in a volcano hazard zone should take. The recent tsunami and the destruction it brought remind us how important it is to provide early warning to residents. The lahar sirens are designed for the outdoor and driving public and are one of the tools used to alert residents during a lahar.

To coincide with this drill, Emergency Management will send out a Pierce County ALERT. This is a fairly new mass communication tool that allows the county to call residents and businesses during emergencies or other significant events. The morning of the siren drill, Emergency Management will call residents of the Puyallup River Valley from Orting to Fife, to remind them about the test. (Puyallup residents will be notified by their own mass notification system). County residents and businesses can 'opt-in' other devices to receive these messages as well as cell phones, email, texts, etc. by signing up online at http://www.piercecountywa.org .

INDONESIA: Government to relocate volcano survivors

IrinNews.com: INDONESIA: Government to relocate volcano survivors
JAKARTA, 2 May 2011 (IRIN) - The Indonesian government looks set to relocate thousands of survivors of last year's deadly Mount Merapi volcano to safer locations, officials say.

Under a two-year project, Jakarta will provide land, housing, and money to more than 2,700 families whose villages were destroyed in the eruptions; build infrastructure and provide jobs, at an estimated cost of US$158 million, Syamsul Maarif, chairman of the country's National Disaster Management Agency (BNPB), told IRIN.

More than 13,000 people will benefit from the scheme, including residents of five villages in badly affected Cangkringan sub-district and one in Klaten District.

"With almost all the displaced having moved to temporary shelters, our focus now is how to rebuild communities affected by the disaster," Maarif said, adding that each household would be entitled to 100 sqm of land and 30 million rupiah ($3,500) to build a house.

Some residents, however, had objected to the relocation plan so they would be allowed to build houses near their previous neighbourhoods.

"We want to maintain community cohesiveness but at the same time be prepared for a future disaster," Maarif said.

"There must be an agreement that because they live in a place that has the potential to be affected by an eruption, they have to immediately evacuate when ordered to do so."

Thousands displaced

Merapi, one of the country's most active volcanoes, first erupted on 25 October 2010, sending jets of searing gas down its slopes. It continued erupting for a month, killing more than 300 people and driving 200,000 from their homes.

In January, floods caused by rainwater mixing with volcanic rocks and sands displaced hundreds, cut off roads and endangered six villages in Magelang District, 26km from the peak of Merapi.

Budi Hermanto, an activist working with Jalin Merapi, a group which helps coordinate aid for Merapi victims, said some 400 families displaced by the floods were still living in tents in three locations in Magelang District, Central Java.

"Even if their houses were not damaged, it's too dangerous for them to return because they live by the river and the land has been eroded," Hermanto said.

The Ministry of Public Works said it would start building 255 permanent houses for volcano survivors in Sleman District this year, while between 2012 and 2013 some residents would be financially assisted to build homes on their own.

"We hope the government will soon determine the danger zones and locations where houses will be built," said Budi Yuwono, a director-general at the ministry.

Maarif said most of the displaced had moved to temporary shelters in 11 locations in Yogyakarta and Central Java provinces.

In addition, as part of the reconstruction plan, the government will convert 1,310 hectares of land along the slopes of the volcano into protected forest or a national park, Maarif said.

Social Affairs Minister Salim Segaf al-Jufri said that the more than 13,000 people living in temporary shelters would also be provided a daily food allowance of 5,000 rupiah ($0.60) each for the next three to six months until they get back on their feet.

Those relocated will also be given cattle, seeds and saplings so that they can resume farming, said Maarif.

However, said Hermanto: "The government has promised to compensate for cattle killed in the eruptions but so far there has not been a settlement. Some work in the fields but others do odd jobs such as mining sand."

Located within the Pacific Ring of Fire, Indonesia is no stranger to volcanoes, earthquakes, and other natural disasters.

The archipelago nation - the fourth most populated - is home to at least 129 active volcanoes, 68 of which are classified as dangerous.

Simmering Ecuadorian Volcano Spews Ash Sky High

NTDTelevision: Simmering Ecuadorian Volcano Spews Ash Sky High
Residents of Baños, Ecuador were doing what little they could on Saturday to clean their town of a thick coating of ash spewed by the "Throat of Fire" volcano after it erupted on Friday.

Loud explosions shook the ground and rattled windows near the volcano forcing residents to flee.

The volcano is known as Tungurahua in the indigenous Quechua language and is 81 miles southeast of Quito.

Baños, a town popular with foreign and local tourists, was among the places evacuated voluntarily and whose resident now must contend, once more, with cleaning up after the volcano.

Tungurahua, a 16 thousand 5 hundred foot volcano, has been classed as active since 1999 and had a strong eruption in 2008.

It is one of eight active volcanoes in Ecuador.

Sunday, May 1, 2011

Chasing Lava, by Wendell A. Duffield


Chasing Lava: A Geologist's Adventures at the Hawaiian Volcano Observatory, by Wendell A. Duffield
Mountain Press Publishing Company, 2003
160 pages the Galllery of photos, additional reading and index
Library: 551.210 DUF

Description
In 1969, as Neil Armstrong set foot on the Moon, a young geologist known as Duff was preparing to set foot on a rocky landscape of another sort: Kilauea Volcano on the island of Hawaii, where he would spend three years at the Hawaii Volcano Observatory.

Volcanologists and general readers alike will enjoy this entertaining account of living and working at Kilauea-one of the world's most active volcanoes and the home of Pele, goddess of fire and volcanoes.

Duff's narrative encompasses everything from the scientific (observations that the movements of a cooled crust on a lava lake mimicked plate tectonics) to the humorous (his dog's doscovery of a snake on the supposedly snake-free island) to the life-threatening (a colleague's plunge into molten lava.)

Table of Contents
1. A farm boy's image of Hawaii
2. A Volcano observatory is born
3. The Hawaii Volcano Observatory Grows
4. Mingo leads the way
5. Our new home
6. Focusing in: The Hawaiian Islands and their string of old neighbors
7. Taking the pulse of Kilauea
8. Are you on the level?
9. A loaf of bread, a jug of wine, a geodomiter, and thou
10. You're right! That is a snake!
11. Yellow runoff
12. Water beds and magma beds
13. Tree molds and leg molds
14. A Suffocating experience
15. How fast can you runn?
16. Living off the land
17. Camping at Halape
18. Swords into plowshares, spears into pruning hooks
19. Disharmonious tremor and premature eruption
20. Tainted lava
21. The dance of the plates
22. Why I cruise parking lots
23. The South Flank story
24. Mingo goes home
25. Epilogue: Sharing the fruits of maturation
A Gallery of Directors and Scientists-in-Charge of the Hawaiian Volcano Observatory, 1912-2002
Additional reading for the technically inclined
Index