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Numerical modeling of wave propagation in a cracked solid

机译:裂纹固体中波传播的数值模拟

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摘要

In this study, we investigate the dynamics of (damaged) materials with a nonlinear microstructure (microcracks in frictional contact) using a discontinuous Galerkin method. Although the propagation of a plane wave is associated with a complex phenomenon and the stress field loses its homogeneity, the loading pulse has an overall front wave at each moment. Thus, a macroscopic behavior can be extracted and compared with reference solutions based on analytical formulas deduced from the effective (static) elasticity models of a cracked solid. The influences of the mesh and of the microcrack pattern have been tested to choose an optimal numerical setting. We analyzed the sensitivity of the damaged pulse with respect to microcrack density, wavelength, and microcrack orientation. For small values of crack density parameter, the theoretical formula and the computed speed of the damaged pulse are very close, but for larger values there is an important gap between them. For large ratios of wavelength over crack length, the wave speed depends only on the crack density parameter. However, if this ratio is of the order of unity, the wave speed, pulse duration, and pulse amplitude are very sensitive to the wavelength. For more complex phenomena, namely blast propagation in a cracked material, we discuss how the microcrack orientation affects wave propagation and scattering.
机译:在这项研究中,我们使用不连续的Galerkin方法研究了使用非线性微观结构(摩擦接触中的微裂纹)的动态的动态。尽管平面波的传播与复杂的现象相关联,但应力场失去其均匀性,但是加载脉冲在每一刻都具有总体前波。因此,可以基于由裂化固体的有效(静态)弹性模型所推断的分析公式,与参考溶液进行提取和比较宏观行为。已经测试了网状物和微裂纹图案的影响以选择最佳数值设置。我们分析了对微裂纹密度,波长和微裂纹取向的损坏脉冲的灵敏度。对于裂缝密度参数的小值,损坏脉冲的理论公式和计算速度非常接近,但对于更大的值,它们之间存在重要差距。对于波长的大比率在裂缝长度上,波速仅取决于裂缝密度参数。然而,如果该比率是统一的顺序,则波速,脉冲持续时间和脉冲幅度对波长非常敏感。为了更复杂的现象,即裂纹材料中的爆炸传播,我们讨论了微裂纹取向如何影响波传播和散射。

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