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Simulation of the Influence of Rate- and State-dependent Friction on the Macroscopic Behavior of Complex Fault Zones with the Lattice Solid Model

机译:用格形固体模型模拟速率和状态相关的摩擦对复杂断层带宏观行为的影响

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摘要

— In order to understand the earthquake nucleation process, we need to understand the effective frictional behavior of faults with complex geometry and fault gouge zones. One important aspect of this is the interaction between the friction law governing the behavior of the fault on the microscopic level and the resulting macroscopic behavior of the fault zone. Numerical simulations offer a possibility to investigate the behavior of faults on many different scales and thus provide a means to gain insight into fault zone dynamics on scales which are not accessible to laboratory experiments. Numerical experiments have been performed to investigate the influence of the geometric configuration of faults with a rate- and state-dependent friction at the particle contacts on the effective frictional behavior of these faults. The numerical experiments are designed to be similar to laboratory experiments by Dieterich and Kilgore (1994) in which a slide-hold-slide cycle was performed between two blocks of material and the resulting peak friction was plotted vs. holding time. Simulations with a flat fault without a fault gouge have been performed to verify the implementation. These have shown close agreement with comparable laboratory experiments. The simulations performed with a fault containing fault gouge have demonstrated a strong dependence of the critical slip distance D c on the roughness of the fault surfaces and are in qualitative agreement with laboratory experiments.
机译:—为了了解地震成核过程,我们需要了解具有复杂几何形状和断层泥浆带的断层的有效摩擦行为。这一方面的一个重要方面是在微观层面上控制断层行为的摩擦定律与断层带的宏观行为之间的相互作用。数值模拟提供了研究许多不同尺度上的断层行为的可能性,从而提供了一种手段来深入了解实验室实验无法访问的尺度上的断层带动态。已经进行了数值实验,以调查在接触点处具有速率和状态相关的摩擦的断层的几何构型对这些断层的有效摩擦行为的影响。数值实验被设计为类似于Dieterich和Kilgore(1994)的实验室实验,在该实验中,在两个材料块之间执行了滑动-保持-滑动循环,并绘制了相对于保持时间的峰摩擦。已经执行了具有平坦断层而没有断层的模拟,以验证实现。这些与可比的实验室实验显示出紧密的一致性。用包含断层泥的断层进行的模拟表明,临界滑动距离D c 对断层表面粗糙度的强烈依赖性,并且与实验室实验在质量上吻合。

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  • 来源
    《Pure and Applied Geophysics》 |2002年第9期|1967-1983|共17页
  • 作者单位

    QUAKES Department of Earth Sciences The University of Queensland Brisbane Australia. E-mail: steffen@quakes.uq.edu.au;

    US Geological Survey Organisation (USGS) Menlo Park CA. E-mail: jdieterich@usgs.gov;

    QUAKES Department of Earth Sciences The University of Queensland Brisbane Australia. E-mail: mora@quakes.uq.edu.au;

    QUAKES Department of Earth Sciences The University of Queensland Brisbane Australia. E-mail: place@quakes.uq.edu.au;

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

    Key words: Friction; lattice solid model.;

    机译:关键词:摩擦;晶格实体模型。;

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