首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Dynamic friction in sheared fault gouge: Implications of acoustic vibration on triggering and slow slip
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Dynamic friction in sheared fault gouge: Implications of acoustic vibration on triggering and slow slip

机译:剪切断层泥中的动摩擦:声振动对触发和缓慢滑动的影响

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摘要

Friction and deformation in granular fault gouge are among various dynamic interactions associated with seismic phenomena that have important implications for slip mechanisms on earthquake faults. To this end, we propose a mechanistic model of granular fault gouge subject to acoustic vibrations and shear deformation. The grain-scale dynamics is described by the Shear-Transformation-Zone theory of granular flow, which accounts for irreversible plastic deformation in terms of flow defects whose density is governed by an effective temperature. Our model accounts for stick-slip instabilities observed at seismic slip rates. In addition, as the vibration intensity increases, we observe an increase in the temporal advancement of large slip events, followed by a plateau and gradual decrease. Furthermore, slip becomes progressively slower upon increasing the vibration intensity. The results shed important light on the physical mechanisms of earthquake triggering and slow slip and provide essential elements for the multiscale modeling of earthquake ruptures. In particular, the results suggest that slow slip may be triggered by tremors.
机译:颗粒状断层泥中的摩擦和变形是与地震现象相关的各种动力相互作用之一,对地震断层的滑动机制具有重要意义。为此,我们提出了受声振动和剪切变形影响的颗粒状断层泥的力学模型。颗粒流的剪切-变形-区理论描述了晶粒度动力学,该理论根据流动缺陷来解释不可逆的塑性变形,其流动密度由有效温度决定。我们的模型考虑了在地震滑动速率下观测到的粘滑不稳定性。此外,随着振动强度的增加,我们观察到大滑移事件随时间推移的增加,随后达到平稳并逐渐降低。此外,随着振动强度的增加,滑动逐渐变慢。研究结果为地震触发和缓慢滑动的物理机制提供了重要启示,并为地震破裂的多尺度模拟提供了必要的要素。尤其是,结果表明,缓慢的滑倒可能是由震颤触发的。

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