Recently introduced non-reflecting boundary conditions are numerically exact: the solution on a given domain is the same as a subset of one on an enlarged domain where boundary reflections do not have time to reach the original domain. In 1D with second- or higher-order finite differences, a recurrence relation based on translation invariance provides the boundary conditions. In 2D or 3D, a recurrence relation was only found for a non-reflecting boundary on one or two opposing sides of the domain and zero Dirichlet or Neumann boundaries elsewhere. Otherwise, corners cause translation invariance to be lost. The proposed workaround restores translation invariance with classic, approximately non-reflecting boundary conditions on the other side...
The propagation of sound under water is modeled by the wave equation. Under certain conditions, this...
Many practical problems involve wave propagation through atmosphere, oceans, or terrestrial crust. M...
The presence of wave motion is the defining feature in many fields of application,such as electro-ma...
Simulations of wave propagation in the Earth usually require truncation of a larger domain to the re...
ABSTRACTWhen modeling wave propagation, truncation of the computational domain to a manageable size ...
Summary: When solving the wave equation in infinite regions using finite ele-ment methods, the domai...
Using the framework introduced by Rowley and Colonius [14] we construct a dis-cretely non-reflecting...
this paper, we couple fast nonreflecting boundary conditions, developed in [3] for spherical and cyl...
Abstract: We propose artificial boundary conditions for the wave equation considered outsi...
The numerical solution of the time dependent wave equation in an unbounded domain generally leads to...
We consider two aspects of non-reflecting boundaryconditions for wave propagation problems. First we...
The simulation of wave phenomena in unbounded domains generally requires an artificial boundary to t...
Solution of the wave equation using techniques such as finite difference or finite element methods c...
Abstract. The numerical solution of the time dependent wave equation in an unbounded domain generall...
AbstractTo solve the time-dependent wave equation in an infinite two (three) dimensional domain a ci...
The propagation of sound under water is modeled by the wave equation. Under certain conditions, this...
Many practical problems involve wave propagation through atmosphere, oceans, or terrestrial crust. M...
The presence of wave motion is the defining feature in many fields of application,such as electro-ma...
Simulations of wave propagation in the Earth usually require truncation of a larger domain to the re...
ABSTRACTWhen modeling wave propagation, truncation of the computational domain to a manageable size ...
Summary: When solving the wave equation in infinite regions using finite ele-ment methods, the domai...
Using the framework introduced by Rowley and Colonius [14] we construct a dis-cretely non-reflecting...
this paper, we couple fast nonreflecting boundary conditions, developed in [3] for spherical and cyl...
Abstract: We propose artificial boundary conditions for the wave equation considered outsi...
The numerical solution of the time dependent wave equation in an unbounded domain generally leads to...
We consider two aspects of non-reflecting boundaryconditions for wave propagation problems. First we...
The simulation of wave phenomena in unbounded domains generally requires an artificial boundary to t...
Solution of the wave equation using techniques such as finite difference or finite element methods c...
Abstract. The numerical solution of the time dependent wave equation in an unbounded domain generall...
AbstractTo solve the time-dependent wave equation in an infinite two (three) dimensional domain a ci...
The propagation of sound under water is modeled by the wave equation. Under certain conditions, this...
Many practical problems involve wave propagation through atmosphere, oceans, or terrestrial crust. M...
The presence of wave motion is the defining feature in many fields of application,such as electro-ma...