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Geophysical Waveform's Frequency Attenuation as a Precursor to Rock Shear Failure

机译:地球物理波形的频率衰减作为岩石剪切失效的前兆

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Ultrasonic wave monitoring methods are among the most promising proven methods in investigating the shear failure of rock discontinuities (fractures or joints). In this study, ultrasonic waves recorded during direct shear experiments on rock joints were employed to investigate the shear failure processes. A series of direct shear experiments was performed on gypsum specimens where shear waves were transmitted through and reflected off the discontinuity as the rock was subjected to shear failure. Distinct peaks in the dominant frequency of transmitted and reflected waveforms were systematically observed prior to the shear failure of the rock and were considered as "precursors" to the shear failure. This study shows that a rock discontinuity behaves as a low pass filter that attenuates the high frequency components of the signal. Such attenuation depends on the stiffness of the rock discontinuity which can be affected by the applied shear stress and the damage at the asperity contact points.
机译:超声波监测方法是研究岩石不连续剪切失效(骨折或关节)的最有希望的经过最有希望的方法。在该研究中,采用在岩钩上的直接剪切实验期间记录的超声波研究剪切失效过程。在石膏样品上进行一系列直接剪切实验,其中剪切波通过并反射不连续,因为岩石进行剪切失效。在岩石的剪切失败之前系统地观察到透射和反射波形的主导频率的不同峰,并被认为是剪切失效的“前体”。本研究表明,岩石不连续性的表现为衰减信号的高频分量的低通滤波器。这种衰减取决于可以受施加的剪切应力和粗糙接触点处的损伤影响的岩石不连续性的刚度。

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