An anisotropic layered poroelastic half-space subjected to a moving point load

Fang Wang, Xueli Han*, Tao Ding

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

11 Citations (Scopus)

Abstract

The dynamic responses of an anisotropic layered poroelastic half-space subjected to a moving point load are studied based on the Stroh formalism and Fourier transform. The material in each layer of the half-space is anisotropic and poroelastic one. Utilizing the boundary conditions at the half-space surface (permeable or impermeable) and the continuity conditions between each layer, the three-dimensional (3D) solutions for the displacements, the pore pressure, the stresses and the fluid fluxes are obtained. Numerical examples show the validity and elegance of the present solution. For some special cases, our solutions agree with the known results. For the anisotropic case, the 3D dynamic Green's functions for the multi-layered poroelastic half-space show clearly the effect of material properties on the displacement and stress distributions.

Original languageEnglish
Article number106427
JournalSoil Dynamics and Earthquake Engineering
Volume140
DOIs
Publication statusPublished - Jan 2021

Keywords

  • Anisotropic
  • Layered half-space
  • Moving load
  • Poroelastic
  • Stroh formalism

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