In this work, a meshless scheme is presented for the fast simulation of multi-dimensional wave problems. The present method is rather simple and straightforward. The Houbolt method is used to eliminate the time dependence of spatial variables. Then the original wave problem is converted into equivalent systems of modified Helmholtz equations. The sparse scheme of the method of fundamental solutions in combination with the localized method of approximate particular solutions is employed for efficient implementation of spatial variables. To demonstrate the effectiveness and simplicity of this new approach, three numerical examples have been assessed with excellent performance. (C) 2016 Elsevier Ltd. All rights reserved
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The use of parallel computers makes it feasible to simulate elastic waves throughout large heterogen...
We consider the wave equation in a medium with a rapidly varying speed of propagation. We construct ...
Given an arbitrary elliptic partial differential equation (PDE), a procedure for obtaining its solut...
In this work, a meshless scheme is presented for the fast simulation of multi-dimensional wave probl...
This paper describes an application of the recently developed sparse scheme of the method of fundame...
Coupled with the Houbolt method, a third order finite difference time marching scheme, the method of...
In this report, several numerical aspects and diculties for solving a linear system derived from the...
This paper presents numerical simulations of the acoustic wave propagation phenomenon modelled via L...
Abstract. We extended a local meshless approximation method for solving nu-merically time-dependent ...
In this paper, a robust numerical scheme is presented for the reaction diffusion and wave propagatio...
This paper considers large-scale simulations of wave propagation phenomena. We argue that it is poss...
Wave phenomena manifest in nature as electromagnetic waves, acoustic waves, and gravitational waves ...
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WOS: 000289320700020This paper presents the numerical simulation of free surface waves in a 2D domai...
In this abstract, we propose a new finite-difference scheme for solving wave equations. This scheme ...
The use of parallel computers makes it feasible to simulate elastic waves throughout large heterogen...
We consider the wave equation in a medium with a rapidly varying speed of propagation. We construct ...
Given an arbitrary elliptic partial differential equation (PDE), a procedure for obtaining its solut...