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Velocity- and slip-dependent weakening in simulated fault gouge: Implications for multimode fault slip

机译:模拟断层泥中依赖速度和滑动的弱化:对多模断层滑动的影响

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摘要

In addition to the velocity dependence of friction, slip dependence may play a major role before and during earthquake slip in fault zones. We performed laboratory friction experiments on simulated fault gouges, measuring both the velocity and slip dependence of friction in velocity step tests. The pure velocity-dependent component of friction measured over short displacements shows both velocity strengthening and velocity weakening friction, depending on the amount of slip considered. However, we observe that increases in sliding velocity can induce slip weakening behavior which overwhelms the velocity dependence resulting in large overall weakening, especially at rates > 1 mu m/s. On natural tectonic faults, this suggests that a velocity perturbation, such as coseismic rupture propagating onto a fault patch, could induce instability via large slip weakening. Therefore, a fault which is experiencing a transient slip or slow earthquakes may be more easily induced to slip coseismically if a dynamic rupture from large earthquake propagates onto the fault.
机译:除了摩擦的速度相关性外,滑动相关性还可能在断层带地震滑动之前和期间发挥重要作用。我们在模拟断层凿上进行了实验室摩擦实验,在速度阶跃测试中测量了摩擦的速度和滑移依赖性。在短位移下测得的纯与速度有关的摩擦分量,取决于所考虑的滑移量,显示出速度增强和速度减弱的摩擦。但是,我们观察到,滑动速度的增加会引起滑动弱化行为,从而使速度依赖性不堪重负,从而导致整体弱化,特别是在速率> 1μm/ s的情况下。在自然构造断层上,这表明速度扰动(例如,同震破裂传播到断层上)会通过大的滑动减弱作用而引起不稳定性。因此,如果来自大地震的动态破裂传播到断层上,则发生瞬时滑动或慢地震的断层可能更容易引起同震滑动。

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