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On Well-posedness Of The Dynamic Problem For An Anisotropic Fluid-saturated Solid

机译:各向异性流体饱和固体动力学问题的适定性

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It is known that a high degree of anisotropy in the constitutive behaviour of a solid may result in the loss of hyperbolicity of the dynamic equations in the form of either complex-conjugate or purely imaginary characteristic wave speeds (flutter ill-posedness and shear band formation, respectively). In the present paper we investigate the characteristic wave speeds in the dynamic problem for a transversely isotropic fluid-saturated porous solid. Three cases are considered: a dry solid and a saturated solid under locally undrained and drained conditions. It is shown that, for given constitutive parameters of the solid skeleton, the dynamic problem for a drained solid may become ill-posed due to the flutter-type loss of hyperbolicity, while the dynamic equations for a dry and an undrained solids remain hyperbolic. For a given solid skeleton, the characteristic wave speeds are strongly influenced by the pore fluid compressibility which, in turn, is extremely sensitive to the presence of a small amount of free gas.
机译:众所周知,固体的本构行为中的高度各向异性可能导致以复共轭或纯粹虚构特征波速(颤动不适定和剪切带形成)形式出现的动力学方程的双曲率损失。 , 分别)。在本文中,我们研究了横观各向同性的流体饱和多孔固体在动力学问题中的特征波速。考虑了三种情况:在局部不排水和排水条件下的干燥固体和饱和固体。结果表明,对于给定的固体骨架本构参数,排空固体的动力学问题可能由于双曲线的颤振型损失而变得不适当,而干燥和不排空固体的动力学方程仍然是双曲线。对于给定的固体骨架,特征波速受到孔隙流体可压缩性的强烈影响,而孔隙流体的可压缩性又对少量游离气体的存在极为敏感。

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