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Явинский Келля
Вулкан Желтовский. Библиография

Количество записей: 34
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Braitseva O.A., Melekestsev I.V., Ponomareva V.V., Sulerzhitskii L.D. The ages of calderas, large explosive craters and active volcanoes in the Kuril-Kamchatka region, Russia // Bulletin of Volcanology. 1995. V. 57. № 6. P. 383-402. doi: 10.1007/BF00300984.    Аннотация
The ages of most of calderas, large explosive craters and active volcanoes in the Kuril-Kamchatka region have been determined by extensive geological, geomorphological, tephrochronological and isotopic geochronological studies, including more than 600 14C dates. Eight ‘Krakatoa-type’ and three ‘Hawaiian-type’ calderas and no less than three large explosive craters formed here during the Holocene. Most of the Late Pleistocene Krakatoa-type calderas were established around 30 000–40 000 years ago. The active volcanoes are geologically very young, with maximum ages of about 40 000–50 000 years. The overwhelming majority of recently active volcanic cones originated at the very end of the Late Pleistocene or in the Holocene. These studies show that all Holocene stratovolcanoes in Kamchatka were emplaced in the Holocene only in the Eastern volcanic belt. Periods of synchronous, intensified Holocene volcanic activity occurred within the time intervals of 7500–7800 and 1300–1800 14C years BP.
Braitseva O.A., Sulerzhitsky L.D., Litasova S.N., Melekestsev I.V., Ponomareva V.V. Radiocarbon dating and tephrochronology in Kamchatka // Radiocarbon. 1993. V. 35. № 3. P. 463-476.    Аннотация
We discuss results of 14C dates obtained from areas of young volcanoes in Kamchatka. We apply these dates to reconstructing regional volcanic activity during the Holocene.
Girina O.A., Gordeev E.I., Melnikov D.V., Manevich A.G., Nuzhdaev A.A., Romanova I.M. The 25 Anniversary Kamchatkan Volcanic Eruption Response Team // JKASP-2018. Petropavlovsk-Kamchatsky: IVS FEB RAS. 2018.
Gusev A.A., Ponomareva V.V., Braitseva O.A., Melekestsev I.V., Sulerzhitsky L.D. Great explosive eruptions on Kamchatka during the last 10,000 years: Self-similar irregularity of the output of volcanic products // Journal of Geophysical Research. 2003. V. 108. № B2. doi:10.1029/2001JB000312.    Аннотация
Temporal irregularity of the output of volcanic material is studied for the sequence of large (V ≥ 0.5 km3, N = 29) explosive eruptions on Kamchatka during the last 10,000 years. Informally, volcanic productivity looks episodic, and dates of eruptions cluster. To investigate the probable self-similar clustering behavior of eruption times, we determine correlation dimension Dc. For intervals between events 800 and 10,000 years, Dc ≈ 1 (no self-similar clustering). However, for shorter delays, Dc = 0.71, and the significance level for the hypothesis Dc < 1 is 2.5%. For the temporal structure of the output of volcanic products (i.e., for the sequence of variable-weight points), a self-similar “episodic” behavior holds over the entire range of delays 100–10,000 years, with Dc = 0.67 (Dc < 1 at 3.4% significance). This behavior is produced partly by the mentioned common clustering of event dates, and partly by another specific property of the event sequence, that we call “order clustering”. This kind of clustering is a property of a time-ordered list of eruptions, and is manifested as the tendency of the largest eruptions (as opposed to smaller ones) to be close neighbors in this list. Another statistical technique, of “rescaled range” (R/S), confirms these results. Similar but weaker-expressed behavior was also found for two other data sets: historical Kamchatka eruptions and acid layers in Greenland ice column. The episodic multiscaled mode of the output of volcanic material may be a characteristic property of a sequence of eruptions in an island arc, with important consequences for climate forcing by volcanic aerosol, and volcanic hazard.
Holocene Volcanoes in Kamchatka. 2002.
Siebert L., Simkin T. Volcanoes of the World: an Illustrated Catalog of Holocene Volcanoes and their Eruptions. 2013.
Siebert L., Simkin T., Kimberly P. Volcanoes of the World. 2010. 568 p.    Аннотация
This impressive scientific resource presents up-to-date information on ten thousand years of volcanic activity on Earth. In the decade and a half since the previous edition was published new studies have refined assessments of the ages of many volcanoes, and several thousand new eruptions have been documented. This edition updates the book's key components: a directory of volcanoes active during the Holocene; a chronology of eruptions over the past ten thousand years; a gazetteer of volcano names, synonyms, and subsidiary features; an extensive list of references; and an introduction placing these data in context. This edition also includes new photographs, data on the most common rock types forming each volcano, information on population densities near volcanoes, and other features, making it the most comprehensive source available on Earth's dynamic volcanism.
VONA/KVERT Information Releases. 2005.
Volcano observatory notification to aviation (VONA/KVERT). 2011.
Zaretskaya N.E., Ponomareva V.V., Sulerzhitsky L.D. Radiocarbon dating of large Holocene volcanic events within South Kamchatka (Russian Far East) // Radiocarbon. 2007. V. 49. № 2. P. 1065-1078.    Аннотация
Radiocarbon dating is widely used when studying recent volcanic activity in the Kamchatka Peninsula due to the abundance of organic matter that is associated with the volcanic deposits. Here, we present the results of 14C dating of major volcanic events within the active South Kamchatka volcanic zone. South Kamchatka includes 8 recently active volcanic centers (stratovolcanoes, calderas, and large craters) that have been erupting during the Holocene. Their tephras represent useful markers for both the southern part of the peninsula and the Northern Kurile Islands. Since these marker tephra layers facilitate stratigraphic and tephrochronological studies in this area, it was important to determine their ages. We have obtained 73 new individual 14C dates on paleosol, peat, charcoal, and wood associated with the marker tephra layers, then complemented these data with 37 earlier published dates and analyzed the resulting data set. We selected the reliable dates and then obtained average 14C ages of marker tephra layers. The details of these procedures, as well as brief descriptions of South Kamchatka Holocene eruptions and their tephra beds, are presented in the paper.
Апродов В.А. Вулканы. 1982. 367 с.
Влодавец В.И., Пийп Б.И. Каталог действующих вулканов Камчатки // Бюлл. вулканол. станции. // Бюллетень вулканологических станций. 1957. № 25. С. 5-95.    Аннотация
"Каталог действующих вулканов Камчатки" является сводкой наших знаний на 1 января 1957 г. по действующим вулканам Камчатки.
Гущенко И.И. Извержения вулканов мира. Каталог / Отв. ред. Рудич К.Н. 1979. 476 с.
Действующие вулканы Камчатки. В 2-х т. / Отв. ред. Федотов С.А., Масуренков Ю.П. 1991. Т. 2. 415 с.
http://repo.kscnet.ru/117/ [связанный ресурс]
http://repo.kscnet.ru/472/ [связанный ресурс]
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http://repo.kscnet.ru/476/ [связанный ресурс]
http://repo.kscnet.ru/582/ [связанный ресурс]
http://repo.kscnet.ru/687/ [связанный ресурс]
http://repo.kscnet.ru/689/ [связанный ресурс]
http://repo.kscnet.ru/690/ [связанный ресурс]
http://repo.kscnet.ru/691/ [связанный ресурс]
http://repo.kscnet.ru/1180/ [связанный ресурс]
Зеленин Е.А., Пономарева В.В., Михайлюкова П.Г., Мельников Д.В. Обвал на действующем вулкане Желтовский (Южная Камчатка) // Вестник КРАУНЦ. Серия: Науки о Земле. 2015. Т. 26. № 2. С. 51-59.    Аннотация
В статье описан крупный обвал, произошедший на вулкане Желтовский летом 2012 г. Показаны основные особенности вулканической постройки, получены главные морфометрические характеристики обвала. Обвалу, скорее всего, способствовало наличие большого количества слабосвязанных измененных пород в вершинной части вулканической постройки и переувлажнение грунтов в период снеготаяния. Никаких значимых сейсмических или метеорологических событий непосредственно перед обвалом не зафиксировано. Этот пример показывает, что крупные обвалы на вулканических постройках могут происходить без предвестников, что заставляет более внимательно подходить к проблеме оценки связанной с ними опасности. Статья полностью построена на данных дистанционных методов, большая часть которых была получена из общедоступных источников в сети Интернет.

This paper describes a large landslide that occurred on Zheltovsky Volcano in summer 2012. The article describes main features of the volcanic edifice and considers parameters of the landslide. The landslide was likely caused by the altered rocks in the summit area as well as water infiltration during snow melting. No significant seismic or meteorological events had been registered immediately prior to the landslide. This example shows that large landslides at the volcanic edifices may occur without catastrophic precursors, which makes the hazard assessment more difficult. The paper is based exclusively on the remote sensing data most of which are available online from open sources.
Кирсанов И.Т., Хренов А.П., Вакин Е.А. Действующие вулканы Камчатки и Курильских островов в 1973 г. // Бюллетень вулканологических станций. 1975. № 51. С. 3-18.
Кожемяка Н.Н. О некоторых региональных особенностях действующих вулканов Камчатки: динамика интенсивности и продуктивности вулканизма во времени и пространстве // Вулканология и сейсмология. 2000. № 1. С. 18-23.
Кожемяка Н.Н., Важеевская А.А. Вулкан Желтовский // Действующие вулканы Камчатки. В 2-х т.. 1991. Т. 2. С. 354-363.
Кожемяка Н.Н., Огородов Н.В., Мелекесцев И.В., Ермаков В.А. Некоторые особенности эволюции и геологический эффект четвертичного вулканизма Камчатки // Бюллетень вулканологических станций. 1975. № 51. С. 94-102.
Кулаков В.С. О деятельности Камчатских вулканов // Природа. 1936. № 8. С. 21-28.




 

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