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Reflection and transmission coefficients of a single layer in poroelastic media

机译:多孔弹性介质中单层的反射和透射系数

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摘要

Wave propagation in poroelastic media is a subject that finds applications in many fields of research, from geophysics of the solid Earth to material science. In geophysics, seismic methods are based on the reflection and transmission of waves at interfaces or layers. It is a relevant canonical problem, which has not been solved in explicit form, i.e., the wave response of a single layer, involving three dissimilar media, where the properties of the media are described by Biot’s theory. The displacement fields are recast in terms of potentials and the boundary conditions at the two interfaces impose continuity of the solid and fluid displacements, normal and shear stresses, and fluid pressure. The existence of critical angles is discussed. The results are verified by taking proper limits—zero and 100% porosity—by comparison to the canonical solutions corresponding to single-phase solid (elastic) media and fluid media, respectively, and the case where the layer thickness is zero, representing an interface separating two poroelastic half-spaces. As examples, it was calculated the reflection and transmission coefficients for plane wave incident at a highly permeable and compliant fluid-saturated porous layer, and the case where the media are saturated with the same fluid.
机译:多孔弹性介质中的波传播是一个主题,它在从固体地球物理学到材料科学的许多研究领域中都有应用。在地球物理学中,地震方法基于界面或层上波的反射和传输。这是一个相关的规范问题,尚未以显式形式解决,即涉及三种不同介质的单层波响应,其中的介质属性由比奥特的理论描述。位移场根据势重绘,并且两个界面处的边界条件强加了固体和流体位移,法向应力和剪应力以及流体压力的连续性。讨论了临界角的存在。通过与分别对应于单相固体(弹性)介质和流体介质的规范解以及层厚度为零(代表界面)的情况进行比较,通过设定适当的极限(孔隙率为零和100%)来验证结果分隔两个多孔弹性半空间。例如,计算了在高渗透性和柔顺性的流体饱和多孔层上入射的平面波的反射系数和透射系数,以及介质被相同流体饱和的情况。

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