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Numerical studies of quasi-static tectonic loading and dynamic rupture of bi-material interfaces

机译:双材料界面准静态构造载荷和动力破裂的数值研究

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摘要

Dynamic simulations of homogeneous and bi-material fault rupture are modeled using different loading approaches. We demonstrate that a numerical method of quasi-static loading is capable of immediately loading bi-material interfaces to rupture without the iteration over multiple time steps. We show that our method is a computationally inexpensive approach to tectonic loading and is capable of loading a fault to failure. We observe earthquake rupture speed, slip distances and slip rates for homogeneous and bi-material faults for various applied stresses, friction properties and material contrasts across the bi-material interface. We comment on causes for unilateral rupture growth. The results are consistent with experimental results and highlight the importance of material heterogeneity in determining the rupture characteristics of earthquake faults.
机译:使用不同的加载方法对均质和双材料断层破裂的动态模拟进行建模。我们证明了一种准静态加载的数值方法能够立即加载双材料界面破裂,而无需经过多个时间步长进行迭代。我们表明,我们的方法是构造加载的计算便宜方法,并且能够将故障加载到故障。我们观察到双材料界面上各种施加应力,摩擦特性和材料对比的均一和双材料断层的地震破裂速度,滑动距离和滑动率。我们对单边破裂增长的原因进行评论。结果与实验结果一致,并突出了材料异质性在确定地震断层破裂特征中的重要性。

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  • 来源
    《Concurrency and Computation》 |2010年第12期|P.1684-1702|共19页
  • 作者单位

    The University of Queensland, Earth Systems Science Computational Centre, Brisbane, Qld. 4072, Australia;

    rnThe University of Queensland, Earth Systems Science Computational Centre, Brisbane, Qld. 4072, Australia;

    rnThe University of Queensland, Earth Systems Science Computational Centre, Brisbane, Qld. 4072, Australia;

    rnThe University of Queensland, Earth Systems Science Computational Centre, Brisbane, Qld. 4072, Australia;

    rnThe University of Queensland, Earth Systems Science Computational Centre, Brisbane, Qld. 4072, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    earthquake dynamics; bi-material interface; fault rupture; tectonic loading;

    机译:地震动力学;双材料界面;断层破裂构造荷载;

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