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Effect of local fluid flow on reflection of plane elastic waves at the boundary of a double-porosity medium

机译:局部流体对双孔隙介质边界平面弹性波反射的影响

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This study solves a mathematical model for the propagation of harmonic plane waves in a double-porosity solid saturated by a viscous fluid. An eigen-system of order four implies the existence of three longitudinal waves and a transverse wave in the composite porous medium. Eigenvalues of this system define the four complex velocities, which are resolved further to define the phase velocities of four attenuated waves in the medium. Variation of the fluid content in pores due to the wave-induced flow is expressed in terms of dilatations of the constituents in porous aggregate. Reflection of plane waves is studied at the stress-free plane surface of the medium. A numerical example is solved to calculate the partition of the incident energy among the four reflected waves. Conservation of the incident energy flux at the boundary is obtained through the presence of an interaction energy share, even when the poroelastic solid is saturated with a non-viscid fluid. This interaction energy disappears in the absence of the wave-induced flow in non-dissipative porous medium. Else, this interaction energy represents the net dissipation effect of the wave-induced flow as well as the pore-fluid viscosity on the partition of the incident energy at the free surface.
机译:这项研究解决了在粘性流体饱和的双孔隙固体中谐波平面波传播的数学模型。四阶本征系统意味着在复合多孔介质中存在三个纵波和一个横波。该系统的特征值定义了四个复数速度,可以进一步解析它们以定义介质中四个衰减波的相速度。由于波引起的流动,孔中流体含量的变化用多孔聚集体中组分的膨胀表示。在介质的无应力平面上研究了平面波的反射。求解了一个数值示例,以计算入射能量在四个反射波之间的分配。即使当多孔弹性固体被非粘性流体饱和时,通过存在相互作用能份额,也可以在边界处获得入射能量通量的守恒。在非耗散性多孔介质中,在没有波浪感应流的情况下,这种相互作用能消失了。否则,这种相互作用能代表了波诱导流的净耗散效应以及自由表面上入射能量分配上的孔隙流体粘度。

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