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Earthquake-induced thermal anomalies at active volcanoes

机译:活火山地震引起的热异常

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Answering the question whether a regional earthquake can trigger or enhance volcanic activity requires a systematic measure of volcanic activity. One such measure is heat flux. The availability since A.D. 2000 of a satellite-derived heat flux inventory for global volcanism allows us to explore how earthquakes and volcanic activity may be linked. Examination of 7 yr of global volcanic heat flux data reveals 37 volcanic responses to regional earthquakes. Each response is expressed by an increase in heat flux within 1-21 days of the triggering earthquake. Whether a volcano responds depends on earthquake magnitude, distance to the epicenter, and orientation of the earthquake focal mechanism in respect to the volcano: the focal mechanism has to align with the responding system. Of the 7 global major increases of seismic energy during 2000-2006, 4 were followed by a global volcanic heat flux increase. The largest response involved a 300% increase and followed the largest earthquake in the period, the 2004 Sumatra-Andaman (Indonesia) earthquake, moment magnitude, M_W = 9.3.
机译:要回答区域地震是否会触发或增强火山活动的问题,就需要系统地测量火山活动。一种这样的措施是热通量。自2000年A.D.以来,全球火山活动的卫星热通量清单的可用性使我们能够探索地震与火山活动之间的联系。对全球7年的火山热通量数据进行的调查显示,火山对地区地震的反应为37种。每个响应都由触发地震后1-21天内的热通量增加表示。火山是否做出响应取决于地震幅度,到震中的距离以及地震震源机制相对于火山的方向:震源机制必须与响应系统保持一致。在2000年至2006年期间,全球7大地震能量主要增加中,有4个是全球火山热通量增加之后。最大的响应涉及300%的增加,并且是此期间最大的地震,即2004年苏门答腊-安达曼(印度尼西亚)地震,矩震级M_W = 9.3。

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