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3D dynamic responses of a multi-layered transversely isotropic saturated half-space under concentrated forces and pore pressure

机译:多层横向各向同性饱和半空间在集中力和孔隙压力下的3D动态响应

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Dynamic Green's function plays an important role in the study of various wave radiation, scattering and soil-structure interaction problems. However, little research has been done on the response of transversely isotropic saturated layered media. In this paper, the 3D dynamic responses of a multi-layered transversely isotropic saturated half-space subjected to concentrated forces and pore pressure are investigated. First, utilizing Fourier expansion in circumferential direction accompanied by Hankel integral transform in radial direction, the wave equations for transversely isotropic saturated medium in cylindrical coordinate system are solved. Next, with the aid of the exact dynamic stiffness matrix for in-plane and out-of-plane motions, the solutions for multi-layered transversely isotropic saturated half-space under concentrated forces and pore pressure are obtained by direct stiffness method. A FORTRAN computer code is developed to achieve numerical evaluation of the proposed method, and its accuracy is validated through comparison with existing solutions that are special cases of the more general problems addressed. In addition, selected numerical results for a homogeneous and a layered material model are performed to illustrate the effects of material anisotropy, load frequency, drainage condition and layering on the dynamic responses. The presented solutions form a complete set of Green's functions for concentrated forces (including horizontal load in x(y)-direction, vertical load in z-direction) as well as pore pressure, which lays the foundation for further exploring wave propagation of complex local site in a layered transversely isotropic saturated half-space by using the BEMs. (C) 2019 Elsevier Inc. All rights reserved.
机译:动态绿色的功能在各种波辐射,散射和土结构相互作用问题的研究中起着重要作用。然而,对横向各向同性饱和分层介质的响应进行了很少的研究。本文研究了经受浓缩力和孔隙压力的多层横向各向同性饱和半空间的3D动态响应。首先,利用沿径向方向的河口积分变换的圆周方向上的傅里叶膨胀,解决了圆柱形坐标系中横向各向同性饱和介质的波动方程。接下来,借助于平面内和面外运动的精确动态刚度基质,通过直接刚度法获得浓缩力下的多层横向各向同性饱和半空间的多层横向各向同性饱和半空间的溶液。开发了一种FORTRAN计算机代码以实现所提出的方法的数值评估,并且通过与现有的解决方案进行比较验证了其精度,这些解决方案是所解决的更普遍问题的特殊问题。另外,进行均匀和层状材料模型的所选数值结果以说明材料各向异性,负载频率,排水条件和分层对动态响应的影响。所提出的解决方案形成一套完整的绿色函数,用于集中力(包括x(y) - z方向上的垂直载荷,z方向的垂直载荷)以及孔隙压力,为进一步探索复杂的局部探索波传播的基础通过使用BEMS分层横向各向同性饱和半空间的位点。 (c)2019 Elsevier Inc.保留所有权利。

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