首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Fluid Pressure-Triggered Foreshock Sequence of the 2008 Mogul Earthquake Sequence: Insights From Stress Inversion and Numerical Modeling
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Fluid Pressure-Triggered Foreshock Sequence of the 2008 Mogul Earthquake Sequence: Insights From Stress Inversion and Numerical Modeling

机译:2008大型地震序列的流体压力触发的前座序列:来自压力反转和数值模拟的见解

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摘要

In Mogul west of Reno, Nevada, USA, in late February 2008 an earthquake sequence occurred that culminated in a magnitude 4.9 mainshock after a foreshock-rich period lasting approximately 2months on previously unidentified fault structures. In this article, we show that the foreshock sequence may have been driven by a fluid pressure intrusion. We use 1,082 previously calculated earthquake focal mechanisms to infer the local stress field as well as 1,408 relocated foreshock events to determine the required excess fluid pressure field in the source region of the Mogul earthquake sequence to trigger these events. A model of nonlinear pore pressure diffusion is used to model the fluid flow in a highly fractured subsurface. We find a strong correlation between high fluid pressure fronts and foreshock hypocenters, suggesting a natural fluid-driven earthquake sequence.
机译:在美国内华达州内华达州里诺西部的Mogul,在2008年底,发生了地震序列,在富有的富裕期间持续到以前未识别的故障结构上大约2个月后,在富裕的时间内持续了4.9主交序列。 在本文中,我们表明止血序列可能已经被流体压力侵入驱动。 我们使用先前计算的地震焦点机制来推断出局部应力场以及1,408个重新安置的前脚阵容,以确定Mogul地震序列的源区中所需的多余流体压力场,以触发这些事件。 非线性孔隙压力扩散模型用于在高度裂缝的地下模拟流体流动。 我们在高流体压力前沿和止血率之间的强烈相关性,建议天然流体驱动的地震序列。

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