In this paper, we investigate accurate and efficient time advancing methods for computational acoustics, where non-dissipative and non-dispersive properties are of critical importance. Our analysis pertains to the application of Runge-Kutta methods to high-order finite difference discretization. In many CFD applications, multi-stage Runge-Kutta schemes have often been favored for their low storage requirements and relatively large stability limits. For computing acoustic waves, however, the stability consideration alone is not sufficient, since the Runge-Kutta schemes entail both dissipation and dispersion errors. The time step is now limited by the tolerable dissipation and dispersion errors in the computation. In the present paper, it is ...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...
In this paper, we investigate accurate and efficient time advancing methods for computational acoust...
AbstractIn this paper a new Runge–Kutta method with minimal dispersion and dissipation error is deve...
A new explicit fourth-order six-stage Runge-Kutta scheme with low dispersion and low dissipation pro...
AbstractIn this paper, an implementation of some Runge-Kutta schemes that requires 2N-storage, where...
The governing equations of the acoustic problem are the compressible Euler equations. The discretiza...
This paper presents a short overview of recent developments of low-dispersive and low-dissipation fi...
In this thesis, we study and develop different families of time integration schemes for linear ODEs....
In computational aeroacoustics (CAA) simulations, discontinuous Galerkin space dis-cretization (DG) ...
We study the performance of methods of lines combining discontinuous Galerkin spatial discretization...
We study the performance of methods of lines combining discontinuous Galerkin spatial discretization...
The primary focus of this study is upon the numerical stability of high-order finite-difference sche...
The simulation of aeroacoustic problems sets demanding requirements on numerical methods, particular...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...
In this paper, we investigate accurate and efficient time advancing methods for computational acoust...
AbstractIn this paper a new Runge–Kutta method with minimal dispersion and dissipation error is deve...
A new explicit fourth-order six-stage Runge-Kutta scheme with low dispersion and low dissipation pro...
AbstractIn this paper, an implementation of some Runge-Kutta schemes that requires 2N-storage, where...
The governing equations of the acoustic problem are the compressible Euler equations. The discretiza...
This paper presents a short overview of recent developments of low-dispersive and low-dissipation fi...
In this thesis, we study and develop different families of time integration schemes for linear ODEs....
In computational aeroacoustics (CAA) simulations, discontinuous Galerkin space dis-cretization (DG) ...
We study the performance of methods of lines combining discontinuous Galerkin spatial discretization...
We study the performance of methods of lines combining discontinuous Galerkin spatial discretization...
The primary focus of this study is upon the numerical stability of high-order finite-difference sche...
The simulation of aeroacoustic problems sets demanding requirements on numerical methods, particular...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...
A family of space- and time-optimised prefactored compact schemes are developed that minimize the co...