CRYSTALLIZATION OF MICROLITES AND DEGASSING DURING MAGMA ASCENT: CONSTRAINTS ON THE FLUID MECHANICAL BEHAVIOR OF MAGMA DURING THE TENJO ERUPTION ON KOZU ISLAND, JAPAN

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dc.contributor.author Noguchi S.
dc.contributor.author Toramaru A.
dc.contributor.author Shimano T.
dc.date.accessioned 2024-11-17T03:30:20Z
dc.date.available 2024-11-17T03:30:20Z
dc.date.issued 2006
dc.identifier https://www.elibrary.ru/item.asp?id=14078018
dc.identifier.citation Bulletin of Volcanology, 2006, 68, 5, 432-449
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/46565
dc.description.abstract Bubble and crystal textures provide information with regard to the kinetics of the vesiculation and crystallization processes. They also provide insights into the fluid mechanical behavior of magma in a conduit. We performed textural (bubble and crystal) and compositional analyses of pyroclasts that were obtained from the Tenjo pyroclastic flow, which resulted on account of the eruption in 838 A.D. on Kozu Island, about 200 km south of Tokyo, Japan. Pyroclasts in one flow unit (300∼2,060 kg/m3 ; average density 1330 kg/m3 ) can be classified into three types on the basis of vesicle textures. Type I pyroclasts have small isolated spherical bubbles with higher vesicularities (67–77 vol.%) and number density (10.8–11.7 log m−3 ). Type II pyroclasts have vesicularities similar to type I (61–69 vol.%), but most bubbles exhibit evidences of bubble coalescence, and lower number densities than type I (8.9–9.5 log m−3 ). Type III pyroclasts contain highly deformed bubbles with lower vesicularities (16–34 vol.%) and number densities (8.2–9.0 log m−3 ).
dc.subject Microlite crystallization
dc.subject Degassing
dc.subject Textural analysis
dc.subject Crystal size distribution
dc.subject Vesicle textures
dc.subject Conduit flow
dc.title CRYSTALLIZATION OF MICROLITES AND DEGASSING DURING MAGMA ASCENT: CONSTRAINTS ON THE FLUID MECHANICAL BEHAVIOR OF MAGMA DURING THE TENJO ERUPTION ON KOZU ISLAND, JAPAN
dc.type Статья


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