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A Dynamic-induced Direct-shear Model for Dynamic Triggering of Frictional Slip on Simulated Granular Gouges

机译:模拟颗粒凿上摩擦滑移动态触发的动态诱导直接剪切模型

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摘要

This study presents a dynamic-induced direct-shear model to investigate the dynamic triggering of frictional slip on simulated granular gouges. An incident P-wave is generated as a shear load and a normal stress is constantly applied on the gouge layer. The shear stress accumulates in the incident stage and the frictional slip occurs in the slip stage without the effect of the reflected wave. The experimental results show a non-uniform shear stress distribution along the gouge layer, which may be induced by a shear load induced torque and by normal stress vibration along the layer. The shear stress at the trailing edge strongly affects the frictional slip along the P-wave loading direction, while the rebound stress at the leading edge propagates along the opposite direction. The frictional slip is triggered when the maximum shear stress at the trailing edge reaches a critical value. The normal stress influences the maximum shear stress at the trailing edge, the maximum slip displacement and the slip velocity. The advantages and the limitations of this model are discussed at the end.
机译:这项研究提出了一种动态诱导的直接剪切模型,以研究模拟颗粒凿上摩擦滑移的动态触发。入射P波作为剪切载荷产生,并且法向应力不断施加在凿层上。剪切应力在入射阶段积累,而摩擦滑移在滑移阶段发生,没有反射波的影响。实验结果表明,沿切槽层的剪切应力分布不均匀,这可能是由剪切载荷引起的扭矩和沿层的法向应力振动引起的。后缘处的剪应力极大地影响了沿P波加载方向的摩擦滑移,而前缘处的回弹应力则沿相反的方向传播。当后缘的最大剪切应力达到临界值时,将触发摩擦滑移。法向应力会影响后缘的最大剪切应力,最大滑移位移和滑移速度。最后讨论了该模型的优缺点。

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