Title of article
A 2.5-D dynamic model for a saturated porous medium. Part II: Boundary element method
Author/Authors
Jian-Fei Lu، نويسنده , , Dong-Sheng Jeng، نويسنده , , Sally Williams، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
19
From page
359
To page
377
Abstract
The 3-D boundary integral equation is derived in terms of the reciprocal work theorem and used along with the 2.5-D
Green’s function developed in Part I [Lu, J.F., Jeng, D.S., Williams, S., submitted for publication. A 2.5-D dynamic model
for a saturated porous medium: Part I. Green’s function. Int. J. Solids Struct.] to develop the 2.5-D boundary integral
equation for a saturated porous medium. The 2.5-D boundary integral equations for the wave scattering problem and
the moving load problem are established. The Cauchy type singularity of the 2.5-D boundary integral equation is eliminated
through introduction of an auxiliary problem and the treatment of the weakly singular kernel is also addressed. Discretisation
of the 2.5-D boundary integral equation is achieved using boundary iso-parametric elements. The discrete
wavenumber domain solution is obtained via the 2.5-D boundary element method, and the space domain solution is recovered
using the inverse Fourier transform. To validate the new methodology, numerical results of this paper are compared
with those obtained using an analytical approach; also, some numerical results and corresponding analysis are presented.
Keywords
2.5-D boundary element method , The porous medium , Moving loads , Biot’s theory , The Fouriertransform , discrete wavenumber
Journal title
International Journal of Solids and Structures
Serial Year
2008
Journal title
International Journal of Solids and Structures
Record number
449406
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