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从重复层析成像推断2004 - 2005年斯普尔山火山活动的原因。

Causes of volcanic unrest at Mt. Spurr in 2004-2005 inferred from repeated tomography.

作者信息

Koulakov I, Smirnov S Z, Gladkov V, Kasatkina E, West M, El Khrepy S, Al-Arifi N

机构信息

Trofimuk Institute of Petroleum Geology and Geophysics, SB RAS, Prospekt Koptyuga, 3, Novosibirsk, 630090, Russia.

Novosibirsk State University, Novosibirsk, Russia, Pirogova 2, Novosibirsk, 630090, Russia.

出版信息

Sci Rep. 2018 Nov 30;8(1):17482. doi: 10.1038/s41598-018-35453-w.

Abstract

Mt. Spurr is the largest active volcano in Alaska of high explosive potential. The most recent activity, including two recent magmatic eruptions in 1953 and 1992, has occurred via the flanking Crater Peak. From 2004 to 2006, strong seismicity, gas flux, and heating were observed in the summit area, which had remained inactive for more than 5 Ka. To understand the cause of this reactivation, we performed repeated tomography inversions that clearly imaged the magma reservoir beneath Mt. Spurr and showed temporal changes in its shape and intensity. During the two years preceding the unrest, we observed ascension of the upper limit of the reservoir-related anomaly from a depth of 5 to 3 km below the surface, accompanied by strong seismicity. During the following years, the shape of the anomaly remained unchanged, but its intensity weakened. These observations may indicate the release of fluids from the ductile reservoir and fast upward ascent through the brittle cover that caused intensive seismicity and gas flux during the unrest from 2004 to 2006. The origin of this zone will possibly cause a resumption of explosive eruptions in the summit area of Mt. Spurr.

摘要

斯普尔山是阿拉斯加最大的具有高爆发潜力的活火山。最近的活动,包括1953年和1992年最近的两次岩浆喷发,都是通过侧翼的火山口峰发生的。2004年至2006年期间,在山顶区域观测到强烈的地震活动、气体通量和地热现象,该区域已经超过5千年没有活动了。为了了解这次重新活动的原因,我们进行了多次层析成像反演,清晰地成像了斯普尔山下方的岩浆库,并显示了其形状和强度的时间变化。在动荡发生前的两年里,我们观测到与岩浆库相关异常的上限从地表以下5千米上升到3千米,同时伴有强烈的地震活动。在接下来的几年里,异常的形状保持不变,但其强度减弱。这些观测结果可能表明,来自韧性岩浆库的流体释放出来,并通过脆性覆盖层快速向上上升,在2004年至2006年的动荡期间引发了强烈的地震活动和气体通量。这个区域的活动可能会导致斯普尔山山顶区域再次发生爆发性喷发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e895/6269431/2b89ce4f49ec/41598_2018_35453_Fig1_HTML.jpg

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