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首页> 外文期刊>Science in China. Series D, Earth sciences >A numerical method of viscoelastic finite element coupled with spring-block model to simulate the interaction of faults and crustal blocks
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A numerical method of viscoelastic finite element coupled with spring-block model to simulate the interaction of faults and crustal blocks

机译:粘弹性有限元与弹簧块模型耦合的数值方法,用于模拟断层与地壳的相互作用

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A numerical method of viscoelastic finite element coupled with spring-block model is developed to study temporal processes from the slow tectonic motion of large-scale crust to the rapid failure of small-scale faults. Our modeling demonstrates that the motion of crustal blocks is driven by forces from tectonic plate boundaries, and the deformation is distributed on faults for the stress accumulating. The coupling model generates earthquake sequences that display a magnitude-frequency scaling consistent with Gutenberg-Richter law. The frictional heterogeneities affect earthquakes occurrence and stresses distribution of crustal blocks. Rupture of earthquakes starts at the nucleation node, and propagates bilaterally along faults with the stress triggering, release and redistribution. The failure of faults releases part of crustal stresses, the stress state of crustal blocks near fault is affected by the rupture of local segments on the fault, and the stress state of crustal blocks far away from the fault is controlled by the seismic activity of the whole fault.
机译:研究了粘弹性有限元与弹簧块模型相结合的数值方法,研究了从大型地壳的构造运动缓慢到小型断层的快速破坏的时间过程。我们的模型表明,地壳块的运动是由构造板块边界的力驱动的,并且变形分布在断层上以累积应力。耦合模型生成的地震序列显示出符合古腾堡-里希特定律的震级-频率标度。摩擦非均质性影响地震的发生,并影响地壳的应力分布。地震破裂始于成核节点,并随着应力触发,释放和重新分布而沿断层向两侧传播。断层的破坏释放了一部分地壳应力,断层附近的地壳块的应力状态受断层局部断裂的影响,而远离断层的地壳块的应力状态则受地壳的地震活动控制。整个故障。

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