堪察加谢韦卢奇火山 2023 年 4 月 11 日的灾难性爆炸喷发

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Journal of Volcanology and Seismology Pub Date : 2024-06-20 DOI:10.1134/S0742046323700458
N. A. Zharinov, Yu. V. Demyanchuk
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引用次数: 0

摘要

摘要 本文提供了 2023 年 4 月 11 日谢韦鲁奇火山喷发的数据。本文对这次火山爆发的影响进行了评估。定向爆炸摧毁了历经 42 年才形成的熔岩穹丘。根据喷发前获得的数据,熔岩穹丘的体积约为 0.53 立方公里。喷发产生的爆炸喷出物面积为 70 平方公里,体积为 0.49 立方公里。定向爆炸伴随着火成碎屑流,从火山喷出的距离长达 25-30 公里。相关的火山灰落长度超过 200 千米。根据距离火山的远近,火山灰样本的重量在 1.2 至 43.9 千克/2 之间。火山灰沉积面积(灰样重量超过 50 克/平方米)约为 1.7 万平方米,火山灰沉积体积为 0.09 立方公里。考虑到喷出物的总体积(超过 0.60 千立方米),2023 年 4 月 11 日谢韦鲁奇火山的喷发应被称为本世纪的一次巨大灾难性喷发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The April 11, 2023 Catastrophic Explosive Eruption of Sheveluch Volcano, Kamchatka

This paper provides data on the April 11, 2023 eruption of Sheveluch Volcano. The impact of the eruption has been assessed. The directed explosion destroyed the lava dome which took over 42 years to grow. According to the data acquired just before the eruption, the lava dome had a volume of about 0.53 km3. The eruption produced a field of explosive ejecta ∼70 km2 in area and 0.49 km3 in volume. The directed explosion was accompanied by pyroclastic flows which traveled for distances of 25–30 km from the volcano. The associated ashfall had a length of over 200 km. The weight of an ash sample varied between 1.2 and 43.9 kg/2, depending on the distance to the volcano. The area of ash deposits (with the weight of ash samples over 50 g/m2) was about 17 thousand m2, the volume of the ash deposits was 0.09 km3. Considered in relation to the total volume of ejecta (over 0.60 km3), the April 11, 2023 eruption of Sheveluch should be termed a great catastrophic eruption of this century.

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来源期刊
Journal of Volcanology and Seismology
Journal of Volcanology and Seismology 地学-地球化学与地球物理
CiteScore
1.50
自引率
28.60%
发文量
27
审稿时长
>12 weeks
期刊介绍: Journal of Volcanology and Seismology publishes theoretical and experimental studies, communications, and reports on volcanic, seismic, geodynamic, and magmatic processes occurring in the areas of island arcs and other active regions of the Earth. In particular, the journal looks at present-day land and submarine volcanic activity; Neogene–Quaternary volcanism; mechanisms of plutonic activity; the geochemistry of volcanic and postvolcanic processes; geothermal systems in volcanic regions; and seismological monitoring. In addition, the journal surveys earthquakes, volcanic eruptions, and techniques for predicting them.
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