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Simulation of the Transition of Earthquake Rupture from Quasi-static Growth to Dynamic Propagation

机译:地震破裂从准静态增长到动态传播过渡的模拟

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We have simulated a rupture transition from quasi-static growth to dynamic propagation using the boundary integral equation method. In order to make a physically reasonable model of earthquake cycle, we have to evaluate the dynamic rupture propagation in the context of quasi-static simulation. We used a snapshot of the stress distribution just before the earthquake in the quasi-static simulation. The resultant stress will be fed back to the quasi-static simulation. Since the quasi-static simulation used the slip-and time-dependent constitutive relation, the friction law itself evolves with time. Thus, we used the slip-weakening constitutive relation for dynamic rupture propagation consistent with that used for the quasi-static simulation. We modeled a San Andreas type strike-slip fault, in which two different size asperities existed.
机译:我们已经使用边界积分方程方法模拟了从准静态增长到动态传播的破裂过渡。为了建立一个物理上合理的地震周期模型,我们必须在准静态模拟的背景下评估动态破裂传播。在准静态模拟中,我们使用了地震前的应力分布快照。结果应力将反馈到准静态模拟。由于准静态模拟使用的是滑移和时间相关的本构关系,因此摩擦定律本身会随时间变化。因此,我们将滑弱化本构关系用于准动态模拟的动态破裂扩展。我们对San Andreas型走滑断层进行了建模,其中存在两个不同大小的凹凸。

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