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Laterally propagating slow slip events in a rate and state friction model with a velocity-weakening to velocity-strengthening transition

机译:在速率和状态摩擦模型中横向传播缓慢的滑移事件,具有速度减弱到速度增强的过渡

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摘要

We investigate the behavior of simulated slow slip events using a rate and state friction model that is steady state velocity weakening at low slip speeds but velocity strengthening at high slip speeds. Our simulations are on a one-dimensional (line) fault, but we modify the elastic interactions to mimic the elongate geometry frequently observed in slow slip events. Simulations exhibit a number of small events as well as periodic large events. The large events propagate approximately steadily “along strike,” and stress and slip rate decay gradually behind the propagating front. Their recurrence intervals can be determined by considering what is essentially an energy balance requirement for long-distance propagation. It is possible to choose the model parameters such that the simulated events have the stress drops, slip velocities, and propagation rates observed in Cascadia.
机译:我们使用速率和状态摩擦模型研究模拟的慢滑事件的行为,该模型在低滑移速度下稳态速度减弱,而在高滑移速度下速度增强。我们的模拟是针对一维(线)断层,但是我们修改了弹性相互作用以模仿在缓慢滑动事件中经常观察到的细长几何形状。模拟展示了许多小事件以及周期性的大事件。大型事件“沿走向”大致稳定地传播,应力和滑移率在传播的前沿后面逐渐衰减。可以通过考虑长距离传播的基本能量平衡要求来确定其重复间隔。可以选择模型参数,以使模拟事件具有在卡斯卡迪亚观察到的应力下降,滑移速度和传播速率。

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