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Generation and propagation of stick-slip waves over a fault with rate-independent friction

机译:断层上粘滞波的产生和传播,其速率与摩擦无关

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Stick-slip sliding is observed at various scales in fault sliding and the accompanied seismic events. It is conventionally assumed that the mechanism of stick-slip over geo-materials lies in the rate dependence of friction. However, the movement resembling the stick-slip could be associated with elastic oscillations of the rock around the fault, which occurs irrespective of the rate properties of the friction. In order to investigate this mechanism, two simple models are considered in this paper: a mass-spring model of self-maintaining oscillations and a one-dimensional (1-D) model of wave propagation through an infinite elastic rod. The rod slides with friction over a stiff base. The sliding is resisted by elastic shear springs. The results show that the frictional sliding in the mass-spring model generates oscillations that resemble the stick-slip motion. Furthermore, it was observed that the stick-slip-like motion occurs even when the frictional coefficient is constant. The 1-D wave propagation model predicts that despite the presence of shear springs the frictional sliding waves move with the P wave velocity, denoting the wave as intersonic. It was also observed that the amplitude of sliding is decreased with time. This effect might provide an explanation to the observed intersonic rupture propagation over faults.
机译:在断层滑动和伴随的地震事件中,以各种尺度观察到粘滑滑动。传统上认为,在土工材料上发生粘滑的机理在于摩擦的速率相关性。但是,类似于粘滑的运动可能与断层周围岩石的弹性振荡有关,而这与摩擦的速率特性无关。为了研究这种机制,本文考虑了两个简单的模型:自保持振荡的质量弹簧模型和通过无限弹性杆的波传播的一维(1-D)模型。杆在坚硬的基座上滑动摩擦。滑动被弹性剪切弹簧阻止。结果表明,质量弹簧模型中的摩擦滑动会产生类似于粘滑运动的振动。此外,观察到即使摩擦系数恒定也发生粘滑状运动。一维波传播模型预测,尽管存在剪切弹簧,但摩擦滑动波以P波速度移动,表示该波为间声波。还观察到滑动幅度随时间减小。这种效应可能为观察到的声速破裂在断层上的传播提供了解释。

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