AbstractA new second-order alternating direction implicit (ADI) scheme, based on the idea of the operator splitting, is presented for solving two-dimensional wave equations. The scheme is also extended to a high-order compact difference scheme. Both of them have the advantages of unconditional stability, less impact of the perturbing terms on the accuracy, and being convenient to compute the boundary values of the intermediates. Besides this, the compact scheme has high-order accuracy and costs less in computational time. Numerical examples are presented and the results are very satisfactory
AbstractIn this paper, we report new three level implicit super stable methods of order two in time ...
We solve two hydrodynamical problems. The first involves a shock wave, a contact discontinuity, and ...
This paper is concerned with the rigorous error analysis of a fully discrete scheme obtained by usin...
AbstractA new second-order alternating direction implicit (ADI) scheme, based on the idea of the ope...
In this abstract, we propose a new finite-difference scheme for solving wave equations. This scheme ...
In this paper, an alternating implicit block method for solving two dimensional scalar wave equation...
We introduce an accurate and efficient alternating-direction method for solving a viscous wave equa...
Abstract. In several recent works [2], [3], we developed a new second order, A-stable ap-proach to w...
A family of finite difference methods is developed for the numerical solution of the simple wave equ...
In several recent works, we developed a new second order, A-stable approach to wave propagation prob...
Alternating Direction Implicit (ADI) schemes are constructed for the solution of two-dimensional hig...
AbstractThe three-level explicit scheme is efficient for numerical approximation of the second-order...
In this paper, we report new three level implicit super stable methods of order two in time and four...
Abstract: A detailed comparison of one-dimensional compact schemes versus central-differen...
We present a new method for solving the wave equation implic-itly. Our approach is to discretize the...
AbstractIn this paper, we report new three level implicit super stable methods of order two in time ...
We solve two hydrodynamical problems. The first involves a shock wave, a contact discontinuity, and ...
This paper is concerned with the rigorous error analysis of a fully discrete scheme obtained by usin...
AbstractA new second-order alternating direction implicit (ADI) scheme, based on the idea of the ope...
In this abstract, we propose a new finite-difference scheme for solving wave equations. This scheme ...
In this paper, an alternating implicit block method for solving two dimensional scalar wave equation...
We introduce an accurate and efficient alternating-direction method for solving a viscous wave equa...
Abstract. In several recent works [2], [3], we developed a new second order, A-stable ap-proach to w...
A family of finite difference methods is developed for the numerical solution of the simple wave equ...
In several recent works, we developed a new second order, A-stable approach to wave propagation prob...
Alternating Direction Implicit (ADI) schemes are constructed for the solution of two-dimensional hig...
AbstractThe three-level explicit scheme is efficient for numerical approximation of the second-order...
In this paper, we report new three level implicit super stable methods of order two in time and four...
Abstract: A detailed comparison of one-dimensional compact schemes versus central-differen...
We present a new method for solving the wave equation implic-itly. Our approach is to discretize the...
AbstractIn this paper, we report new three level implicit super stable methods of order two in time ...
We solve two hydrodynamical problems. The first involves a shock wave, a contact discontinuity, and ...
This paper is concerned with the rigorous error analysis of a fully discrete scheme obtained by usin...