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Stabilization of fault slip by fluid injection in the laboratory and in situ

机译:在实验室和现场通过注入流体稳定断层

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摘要

Faults can slip seismically or aseismically depending on their hydromechanical properties, which can be measured in the laboratory. Here, we demonstrate that fault slip induced by fluid injection in a natural fault at the decametric scale is quantitatively consistent with fault slip and frictional properties measured in the laboratory. The increase in fluid pressure first induces accelerating aseismic creep and fault opening. As the fluid pressure increases further, friction becomes mainly rate strengthening, favoring aseismic slip. Our study reveals how coupling between fault slip and fluid flow promotes stable fault creep during fluid injection. Seismicity is most probably triggered indirectly by the fluid injection due to loading of nonpressurized fault patches by aseismic creep.
机译:断层可以根据其流体力学性质在地震或地震中滑动,可以在实验室中进行测量。在这里,我们证明了在自然界断层以流体尺度注入流体引起的断层滑动与实验室测得的断层滑动和摩擦性能在数量上是一致的。流体压力的增加首先引起加速的地震蠕变和断层打开。随着流体压力的进一步增加,摩擦主要是速率增强,有利于抗震滑动。我们的研究揭示了断层滑动和流体流动之间的耦合如何促进流体注入过程中稳定的断层蠕变。由于地震蠕变加载了非加压断层,流体注入可能会间接触发地震活动。

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