首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Frictional State Evolution During Normal Stress Perturbations Probed With Ultrasonic Waves
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Frictional State Evolution During Normal Stress Perturbations Probed With Ultrasonic Waves

机译:超声波探测正常压力扰动期间的摩擦状态演变

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Fault normal stress changes dynamically during earthquake rupture; however, the impact of these changes on dynamic frictional strength is poorly understood. Here we report on a laboratory study to investigate the effect of normal stress perturbations on the friction of westerly granite surfaces sheared under normal stresses of 1-25 MPa. We measure changes in surface friction and elastic properties, using acoustic waves, for step changes in normal stress of 1-50% and shearing velocities of 1-100 μm/s. We demonstrate that transmitted elastic wave amplitude is a reliable proxy for the real contact area at the fault interface at steady state. For step increases in normal stress, wave amplitude increases immediately and then continues to increase during elastic shear loading to a peak value from which it decreases as fault slip rate increases. Friction changes in a similar fashion, showing an inelastic increase over a characteristic shear displacement that is independent of loading rate. Perturbations in normal stress during shear cause excursions in the frictional slip rate that must be accounted for in order to accurately predict the evolution of fault strength and elastic properties. Our work improves understanding of induced seismicity and triggered earthquakes with particular focus on simulating static triggering and stress transfer phenomena using rate-and-state frictional formulations in earthquake rupture models.
机译:地震破裂期间发生故障正常应力变化;然而,这些变化对动态摩擦力的影响很差。在这里,我们报告了实验室研究,以研究正常应激扰动对西风花岗岩表面摩擦的影响,在正常应力下为1-25MPa的正常胁迫下进行剪切。我们使用声波测量表面摩擦和弹性性质的变化,对于1-50%的正常应力和1-100μm/ s的剪切速度的步骤变化。我们证明透射的弹性波幅度是在稳态处于故障接口处的实际接触区域的可靠代理。对于正常应力的步骤增加,波幅立即增加,然后在弹性剪切加载到峰值期间继续增加,因为故障滑动率增加到它降低的峰值。摩擦以类似的方式变化,显示出与装载速率无关的特征剪切位移的无弹性增加。在剪切期间正常应力的扰动导致摩擦滑动速率的偏移,以便准确地预测故障强度和弹性特性的演变。我们的工作改善了对诱导地震性和触发地震的理解,特别关注使用地震破裂模型中的速率和状态摩擦配方模拟静态触发和应力转移现象。

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