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Slip- and Time-dependent Fault Constitutive Law and its Significance in Earthquake Generation Cycles

机译:滑动和时变断层本构律及其在地震发生周期中的意义

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By integrating effects of microscopic interactions between statistically self-similar fault surfaces, we succeeded in deriving a slip- and time-dependent fault constitutive law that rationally unifies the slip-dependent law and the rate- and state-dependent law. In this constitutive law the slip-weakening results from the abrasion of surface asperities that proceeds irreversibly with fault slop. On the other hand , the restoration of shear strength after the arrest of faulting results from the adhesion of surface asperities that proceeds with contact time. At the limit of high slip-rate the unified constitutive law is reduced to the slip-weakening law. AT the limit of low slip-rate it shows the well-known log t strengthening of faults over the wide range of contact time t. In the steady state with a constant slip-rate V the shear strength has the negative log V dependence, known as the velocity-weakening. Another important property expected from the unified constitutive law is the gradual increase of the critical weakening displacement D_c with stationary contact time. We numerically examined behavior of a single degree of freedom elastic system following the slip- and time-dependent constitutive law, and found that the periodic stick-slip motion is realized when the adhesion rate is high in comparison with the loading rate. If the adhesion rate is very low, behavior of the system gradually changes from stick-slip motion to steady sliding with time.
机译:通过整合统计上自相似的断层表面之间的微观相互作用的影响,我们成功得出了滑移和时间相关的断层本构定律,该定律将滑移相关定律与速率和状态相关定律合理地统一了起来。在本构定律中,滑移减弱是由表面粗糙的磨损导致的,该磨损随着断层的倾斜而不可逆地进行。另一方面,断层被阻止后抗剪强度的恢复是由于表面粗糙的附着力随接触时间而发生的。在高滑移率的极限下,统一的本构定律被简化为滑移弱化定律。在低滑移率的极限处,它显示了众所周知的在接触时间t宽范围内的故障对数t强化。在具有恒定滑移率V的稳态下,剪切强度具有负对数V依赖性,这被称为速度减弱。统一本构定律所期望的另一个重要特性是,随着接触时间的固定,临界弱化位移D_c逐渐增加。我们根据与滑动和时间有关的本构定律对单自由度弹性系统的行为进行了数值研究,发现当附着率与载荷率相比较高时,可以实现周期性的粘滑运动。如果粘附率非常低,则系统的行为会随时间从粘滑运动逐渐变为稳定滑动。

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