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Seismic heating signatures in the Japan Trench subduction plate-boundary fault zone : evidence from a preliminary rock magnetic 'geothermometer'

机译:日本海沟俯冲板块 - 边界断裂带的地震加热特征:来自初步岩石磁性“地温计”的证据

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摘要

Frictional heating during earthquake rupture reveals important information on earthquake mechanisms and energy dissipation. The amount of annealing varies widely and is, as yet, poorly constrained. Here we use magnetic susceptibility versus temperature measurements during cycling to increasingly elevated temperatures to constrain the maximum temperature a slip zone has experienced. The case study comprises sheared clay cored from the Japan Trench subduction plate-boundary fault zone (décollement), which accommodated the large slip of the 2011 Mw 9.0 Tohoku-oki earthquake. The décollement was cored during the Integrated Ocean Drilling Program (IODP) Expedition 343, the Japan Trench Fast Drilling Project (JFAST). Heating signatures with estimated maximum temperatures ranging from ∼300 to over 500 °C are determined close to the multiple slip surfaces within the décollement. Since it is impossible to tie a specific slip surface to a certain earthquake, thermal evidence for the cumulative effect of several earthquakes is unveiled. This as yet preliminary rock magnetic ‘geothermometer’ would be a useful tool to detect seismic heating along faults that experienced medium temperature rise, a range which is difficult to assess with other approaches.
机译:地震破裂期间的摩擦加热揭示了有关地震机理和能量耗散的重要信息。退火的量变化很大,而且约束很差。在这里,我们在循环到越来越高的温度期间使用磁化率对温度的测量来限制滑移区经历的最高温度。案例研究包括从日本海沟俯冲板块边界断层带(décollement)取芯的剪切粘土,该剪切带适应了2011年东北9.0级地震引起的大滑坡。该部门的核心工作是综合海底钻探计划(IODP)远征343,即日本海沟快速钻探项目(JFAST)。估计的最高温度范围在〜300至500°C以上的加热信号是在靠近扇形结构的多个滑移表面处确定的。由于不可能将特定的滑动面与特定的地震联系起来,因此揭示了多次地震累积影响的热力证据。迄今为止,这种初步的岩磁“地热仪”将是检测沿经历中等温度升高的断层的地震加热的有用工具,该温度范围是其他方法难以评估的。

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