The indirect boundary element method (IBEM) is used to simulate wave propagation in two-dimensional irregularly layered elastic media for internal line sources. The method is based on the integral representation for scattered elastic waves using single layer boundary sources. Fulfillment of the boundary conditions leads to a system of integral equations. Results are obtained in the frequency domain and seismograins are computed through Fourier synthesis. In order to test and validate the method we present various comparisons between our results and the time series obtained analytically for a buried line source in a half-space and by using the recently developed spectral element method (SEM)
The diffraction of P, S and Rayleigh waves by 3-D topographies in an elastic half-space is studied u...
The boundary element method (BEM) is used to fully simulate the propagation of waves between two flu...
The aim of the boundary element method (BEM) is the numerical solution of integral equations derived...
We present a semi-analytic method based on the propagation matrix formulation of indirect boundary e...
A semi-analytic method based on the propagation matrix formulation of indirect boundary element meth...
A direct boundary element method that uses the full-space Green's function is proposed for calc...
© 2019 A new indirect boundary integral equation method (IBIEM)is proposed in this study to solve th...
This book focuses on the mathematical potential and computational efficiency of the Boundary Element...
The boundary element method (BEM) is a useful method for seismic-wave simulation in a stratified med...
The Indirect Boundary Element Method (IBEM) is used to compute the seismic response of a three-dimen...
In this paper, the traction boundary element method (TBEM) and the boundary element method (BEM), fo...
A mixed formulation that uses both the traction boundary element method (TBEM) and the boundary elem...
Abstract Three-dimensional seismic responses of two-dimensional topogra-phies are studied by means o...
A 2.5D Boundary Element Method (BEM) formulation, applied in the frequency domain, is developed to c...
The seismic wave scattering by a 3D tunnel mountain is investigated by the indirect boundary element...
The diffraction of P, S and Rayleigh waves by 3-D topographies in an elastic half-space is studied u...
The boundary element method (BEM) is used to fully simulate the propagation of waves between two flu...
The aim of the boundary element method (BEM) is the numerical solution of integral equations derived...
We present a semi-analytic method based on the propagation matrix formulation of indirect boundary e...
A semi-analytic method based on the propagation matrix formulation of indirect boundary element meth...
A direct boundary element method that uses the full-space Green's function is proposed for calc...
© 2019 A new indirect boundary integral equation method (IBIEM)is proposed in this study to solve th...
This book focuses on the mathematical potential and computational efficiency of the Boundary Element...
The boundary element method (BEM) is a useful method for seismic-wave simulation in a stratified med...
The Indirect Boundary Element Method (IBEM) is used to compute the seismic response of a three-dimen...
In this paper, the traction boundary element method (TBEM) and the boundary element method (BEM), fo...
A mixed formulation that uses both the traction boundary element method (TBEM) and the boundary elem...
Abstract Three-dimensional seismic responses of two-dimensional topogra-phies are studied by means o...
A 2.5D Boundary Element Method (BEM) formulation, applied in the frequency domain, is developed to c...
The seismic wave scattering by a 3D tunnel mountain is investigated by the indirect boundary element...
The diffraction of P, S and Rayleigh waves by 3-D topographies in an elastic half-space is studied u...
The boundary element method (BEM) is used to fully simulate the propagation of waves between two flu...
The aim of the boundary element method (BEM) is the numerical solution of integral equations derived...