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Effect of initial stress on the propagation of plane waves in a general anisotropic poroelastic medium

机译:初始应力对一般各向异性孔弹性介质中平面波传播的影响

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Biot's theory is used to study the wave propagation in fluid-saturated porous medium in the presence of initial stress. The medium is a general anisotropic porous frame saturated with a viscous fluid flowing through its pores of anisotropic permeability. Propagation of plane waves in the medium is represented through two systems of equations. One is consisting of modified Christoffel equations that define the existence of the four waves in the medium. The complex phase velocities of the four waves and the corresponding polarizations of solid particles are derived from this system. The effect of initial stress on the propagation is represented through the modifications in a square matrix of order 3. The other system relates the fluid discharge in the medium to the motion of its solid particles. This relation does not involve the components of initial stress, if any, present in the medium. A particular numerical example shows that the attenuation is more sensitive to the presence of initial stress as compared to the propagation velocities. The effect of initial stress on velocities may be little more in high-frequency regime of Biot's theory. The effect of initial stress on attenuation varies considerably with frequency, but these variations are different for different waves. The symmetries in the anisotropy may reduce the effect of initial stress on velocities and attenuations.
机译:BIOS的理论用于研究初始应力存在下流体饱和多孔介质中的波长。培养基是饱和流体流过其各向异性渗透性孔的粘性流体的一般各向异性多孔框架。平面波在介质中的传播通过两个方程系统表示。一个由修改的Christoffel方程组成,该方程式定义了介质中的四波的存在。四波的复杂相速度和固体颗粒的相应偏振衍生自该系统。初始应力对传播的影响是通过顺序3的方形矩阵中的修改来表示的。另一系统将介质中的流体放电涉及其固体颗粒的运动。这种关系不涉及介质中存在的初始压力的组分。特定数值示例表明,与传播速度相比,衰减对初始应力的存在更敏感。初始压力对Biot理论的高频制度的影响可能更少。初始应力对衰减的影响随着频率而变化显着,但对于不同的波,这些变化是不同的。各向异性的对称性可以降低初始应力对速度和衰减的影响。

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