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Analysis for oblique wave propagation across filled joints based on thin-layer interface model

机译:基于薄层界面模型的斜波在填充缝中传播的分析

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摘要

The thin-layer interface model (TLIM) for filled joints is extended to analyze wave propagation obliquely across jointed rockmasses. In the paper, the filling material is equivalent as an elastic and continuum medium and the filled joint ismodeled as a thin-layer interface with one thin thickness. By back analysis, the normal and tangential dynamic properties of the filled joint are theoretically estimated. Comparison is then carried out between the present approach and the existing analytical methods when an incident longitudinal (P) or transverse (S) wave normally or obliquely impacts filled joints. For the existing methods, joints are usually modeled as the displacement discontinuous boundaries with zero thickness. Finally, the effect of relevant parameters, such as the joint thickness, the frequency of the incidence, the incident angle and the ray path derivation, on wave propagation and the cause of the discrepancy between the thin-layer interface and the zero-thickness interface models are discussed.
机译:扩展了用于填充节理的薄层界面模型(TLIM),以分析波节在节理岩体上的倾斜传播。在本文中,填充材料等效于一种弹性和连续的介质,填充的关节被建模为具有一个薄厚度的薄层界面。通过反向分析,理论上估计了填充接头的法向和切向动力学特性。然后,当入射的纵波(P)或横波(S)正常或倾斜地冲击填充的关节时,将在本方法与现有分析方法之间进行比较。对于现有方法,通常将关节建模为厚度为零的位移不连续边界。最后,相关参数的影响,如接缝厚度,入射频率,入射角和射线路径导数,对波传播以及薄层界面与零厚度界面之间差异的原因的影响模型进行了讨论。

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