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Multi-Modal Monitoring of Slip Along Frictional Discontinuities

机译:沿摩阻不连续滑动的多模态监测

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摘要

Seismic wave transmission and digital image correlation (DIC) are employed to study slip processes along frictional discontinuities. A series of biaxial compression experiments are performed on gypsum specimens with non-homogeneous contact surfaces. The specimens are composed of two blocks with perfectly mated contact surfaces with a smooth surface with low frictional strength on the upper half and a rough surface with high frictional strength on the lower half. Compressional, P, and shear, S, wave pulses were transmitted through the discontinuity while digital images of the specimen surface were acquired during the test. A distinct peak in the amplitude of transmitted wave occurs prior to the peak shear strength and is considered a "precursor" to the failure. Precursors indicate that slip initiates from the smooth surface and extends to the rough surface as the shear load is increased. From the DIC data, slip is identified as a jump in the displacement field along the fracture that initiates from the smooth surface and propagates to the rough surface. Precursors are associated with an increase in the rate of slip across thediscontinuity and are a measure of the reduction in the fracture shear stiffness.
机译:地震波传输和数字图像相关性(DIC)用于研究沿摩擦间断的滑动过程。在具有非均匀接触表面的石膏样品上进行了一系列双轴压缩实验。样品由两个块组成,两个块的接触表面完全匹配,上半部分的摩擦力低,表面光滑,下半部分的摩擦力高,表面粗糙。压缩波和剪切波S脉冲通过不连续点传输,同时在测试过程中获取了样本表面的数字图像。传输波振幅中的一个明显峰值出现在峰值剪切强度之前,并被认为是破坏的“先兆”。前体表明,随着剪切载荷的增加,滑移从光滑表面开始并延伸到粗糙表面。从DIC数据中,滑移被识别为位移场中沿着裂缝的跳变,该跳变从光滑表面开始并传播到粗糙表面。前体与不连续处的滑移率增加有关,并且是断裂剪切刚度降低的量度。

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