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首页> 外文期刊>Pure and Applied Geophysics >Numerical Simulations of Large Earthquakes: Dynamic Rupture Propagation on Heterogeneous Faults
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Numerical Simulations of Large Earthquakes: Dynamic Rupture Propagation on Heterogeneous Faults

机译:大型地震的数值模拟:非均质断层的动态破裂传播

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— Our current conceptions of earthquake rupture dynamics, especially for large earthquakes, require knowledge of the geometry of the faults involved in the rupture, the material properties of the rocks surrounding the faults, the initial state of stress on the faults, and a constitutive formulation that determines when the faults can slip. In numerical simulations each of these factors appears to play a significant role in rupture propagation, at the kilometer length scale. Observational evidence of the earth indicates that at least the first three of the elements, geometry, material, and stress, can vary over many scale dimensions. Future research on earthquake rupture dynamics needs to consider at which length scales these features are significant in affecting rupture propagation.
机译:—我们目前对地震破裂动力学的理解,特别是对于大地震,需要了解与破裂有关的断层的几何形状,断层周围岩石的材料特性,断层应力的初始状态以及本构公式确定何时可以滑动故障。在数值模拟中,这些因素中的每一个似乎都在公里长度尺度上对破裂传播起着重要作用。地球的观测证据表明,至少前三个元素(几何形状,材料和应力)可以在许多比例尺尺寸上变化。未来关于地震破裂动力学的研究需要考虑这些特征在何种长度尺度上对影响破裂传播具有重要意义。

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