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火山地震活动的实验室模拟。

Laboratory simulation of volcano seismicity.

作者信息

Benson Philip M, Vinciguerra Sergio, Meredith Philip G, Young R Paul

机构信息

Rock and Ice Physics Laboratory, Department of Earth Sciences, University College London, Gower Street, London, WC1E 6BT, UK.

出版信息

Science. 2008 Oct 10;322(5899):249-52. doi: 10.1126/science.1161927.

Abstract

The physical processes generating seismicity within volcanic edifices are highly complex and not fully understood. We report results from a laboratory experiment in which basalt from Mount Etna volcano (Italy) was deformed and fractured. The experiment was monitored with an array of transducers around the sample to permit full-waveform capture, location, and analysis of microseismic events. Rapid post-failure decompression of the water-filled pore volume and damage zone triggered many low-frequency events, analogous to volcanic long-period seismicity. The low frequencies were associated with pore fluid decompression and were located in the damage zone in the fractured sample; these events exhibited a weak component of shear (double-couple) slip, consistent with fluid-driven events occurring beneath active volcanoes.

摘要

火山构造内产生地震活动的物理过程极为复杂,尚未完全被理解。我们报告了一项实验室实验的结果,该实验中对来自意大利埃特纳火山的玄武岩进行了变形和破裂处理。实验通过围绕样品布置的一系列传感器进行监测,以实现微震事件的全波形捕获、定位和分析。充满水的孔隙体积和损伤带在破坏后迅速减压,引发了许多低频事件,类似于火山的长周期地震活动。这些低频事件与孔隙流体减压有关,位于破裂样品的损伤带中;这些事件表现出微弱的剪切(双力偶)滑动分量,这与活火山下方发生的流体驱动事件一致。

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