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Dynamic Green's functions for an anisotropic poroelastic half-space
Authors:Fang Wang  Tao Ding  Xueli Han  Lei Lv
Institution:1. Department of Mechanics, School of Aerospace Engineering, Beijing Institute of Technology, Beijing, P. R. China;2. School of Chemistry and Chemical Engineering, Yan'an University, Yan'an, P. R. China;3. School of Petroleum Engineering and Environmental Engineering, Yan'an University, Yan'an, P. R. China
Abstract:The dynamic responses of an anisotropic poroelastic half-space under an internal point load and fluid source are investigated in the frequency domain in this paper. By virtue of Fourier transform and Stroh formalism, the three-dimensional (3D) general solutions of the anisotropic Biot's coupling dynamics equations are derived in the frequency domain. Considering the two surface conditions, permeable and impermeable, the analytical solutions for displacement fields and pore pressure in half-space under a point source (point load or a fluid source) are obtained. When the material properties are isotropic, the numerical results of the poroelastic half-space are in excellent agreement with the existing analytical solutions. For anisotropic half-space cases, numerical results show the strong dependence of the dynamic Green's functions on the material properties.
Keywords:anisotropic  dynamics  frequency  Green's function  half-space  poroelastic
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