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In situ observations of earthquake-driven fluid pulses within the Japan Trench plate boundary fault zone

机译:日本海沟板块边界断层带内地震驱动的流体脉冲的原位观测

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摘要

Transient fluid flow within faults is suspected to be an important component of the earthquake cycle and subduction zone evolution. However, an understanding of the mechanisms and time scales involved has been limited due to a paucity of direct measurements. Here we report on in situ observations that appear to capture the thermal signature of earthquake-driven fluid pulses within the damage zone of the Japan Trench plate boundary fault. The data are from a sub-seafloor temperature observatory installed through the fault following the March 2011 M-w 9.0 Tohoku-oki earthquake as part of the Integrated Ocean Drilling Program's Japan Trench Fast Drilling Project (JFAST). High-resolution temperature time series data reveal spatially correlated transients in response to earthquakes that are indicative of advection by transient fluid flow. We interpret the observed phenomenon as reflecting pressure redistribution in a fault zone and a potential mechanism for earthquake triggering and episodic heat and chemical transport.
机译:断层内的瞬态流体流动被怀疑是地震周期和俯冲带演化的重要组成部分。然而,由于缺乏直接测量,对所涉及的机制和时标的理解受到限制。在这里,我们报告了一些原位观测资料,这些观测资料似乎捕获了日本海沟板块边界断层破坏区域内地震驱动的流体脉冲的热信号。数据来自于2011年3月东北9.0级地震之后的海底温度观测站,该地震是综合海洋钻探计划的日本海沟快速钻探项目(JFAST)的一部分。高分辨率温度时间序列数据揭示了响应地震的空间相关瞬变,表明瞬变流体流动对流。我们将观察到的现象解释为反映了断裂带中的压力重新分布,以及地震触发和偶发性热化学传递的潜在机制。

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