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首页> 外文期刊>Science Advances >Seismic evidence for megathrust fault-valve behavior during episodic tremor and slip
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Seismic evidence for megathrust fault-valve behavior during episodic tremor and slip

机译:巨型震颤和滑动期间巨大故障阀行为的地震证据

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摘要

Fault slip behavior during episodic tremor and slow slip (ETS) events, which occur at the deep extension of subduction zone megathrust faults, is believed to be related to cyclic fluid processes that necessitate fluctuations in pore-fluid pressures. In most subduction zones, a layer of anomalously low seismic wave velocities [low-velocity layer (LVL)] is observed in the vicinity of ETS and suggests high pore-fluid pressures that weaken the megathrust. Using repeated seismic scattering observations in the Cascadia subduction zone, we observe a change in the seismic velocity associated with the LVL after ETS events, which we interpret as a response to fluctuations in pore-fluid pressure. These results provide direct evidence of megathrust fault-valve processes during ETS.
机译:在俯冲区巨大故障的深层延伸期间发生的情节震颤和慢速滑动(ETS)事件中的故障滑动行为被认为与需要在孔隙流体压力波动的循环流体工艺相关。在大多数俯卧区中,在ETS附近观察到一层异常低地震波速度[低速层(LVL)],并表明削弱了巨大的孔隙流体压力。在Cascadia俯冲区中使用反复的地震散射观察,我们观察ETS事件后与LVL相关的地震速度的变化,我们将其解释为对孔隙流体压力波动的响应。这些结果在ETS期间提供了Megathrust故障阀流程的直接证据。

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