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P-wave transmission across fractures with nonlinear deformational behaviour

机译:具有非线性变形行为的P波在裂缝中的传播

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Stress wave attenuation across fractured rock masses is a great concern of underground structure safety. When the wave amplitude is large, fractures experience nonlinear deformation during the wave propagation. This paper presents a study on normal transmission of P-wave across parallel fractures with nonlinear deformational behaviour (static Barton-Bandis model). The results show that the magnitude of transmission coefficient is a function of incident wave amplitude, nondimensional fracture spacing and number of fractures. Two important indices of nondimensional fracture spacing are identified, and they divide the area of nondimensional fracture spacing into three parts (individual fracture area, transition area and small spacing area). In the different areas, the magnitude of transmission coefficient has different trends with nondimensional fracture spacing and number of fractures. In addition, the study reveals that under some circumstances, the magnitude of transmission coefficient increases with increasing number of fractures, and is larger than 1.
机译:裂隙岩体上的应力波衰减是地下结构安全的重要问题。当波幅较大时,裂缝在波传播过程中会发生非线性变形。本文对具有非线性变形行为的平行裂缝的纵波正向传播进行了研究(静态Barton-Bandis模型)。结果表明,透射系数的大小是入射波幅度,无量纲裂缝间距和裂缝数量的函数。确定了无量纲裂缝间距的两个重要指标,它们将无量纲裂缝间距的面积分为三个部分(单独裂缝面积,过渡面积和小间距面积)。在不同区域,传输系数的大小随无量纲裂缝间距和裂缝数量的变化而变化。此外,研究表明,在某些情况下,传输系数的大小会随着裂缝数量的增加而增加,并且大于1。

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