AbstractIn this paper, we contribute higher order operator splitting methods improved by Zassenhaus product. We apply the contribution to classical and iterative splitting methods. The underlying analysis to obtain higher order operator splitting methods is presented. While applying the methods to partial differential equations, the benefits of balancing time and spatial scales are discussed to accelerate the methods.The verification of the improved splitting methods are done with numerical examples. An individual handling of each operator with adapted standard higher order time-integrators is discussed. Finally, we conclude the higher order operator splitting methods
In this paper we describe an iterative operator-splitting method for bounded operators. Our contribu...
In this paper we describe an iterative operator-splitting method for bounded operators. Our contribu...
In this paper, we discuss higher-order operator-splitting methods done by disentanglement methods. T...
In this paper, we contribute higher order operator splitting methods improved by Zassenhaus product....
AbstractIn this paper, we contribute higher order operator splitting methods improved by Zassenhaus ...
In this paper, we contribute higher order operator-splitting method improved by Zassenhaus product. ...
In this paper, we contribute operator-splitting methods improved by the Zassenhaus product for the n...
Abstract. In this article, we combine operator-splitting methods of an iterative and non-iterative t...
In this paper we design higher order time integrators for systems of stiff ordinary differential equ...
AbstractIn this paper we design higher-order time integrators for systems of stiff ordinary differen...
Abstract In this paper, we discuss higher-order operator-splitting methods done by disentanglement m...
In this paper, we discuss higher-order operator-splitting methods done by disentanglement methods. T...
In this article, we combine operator-splitting methods of an iterative and non-iterative type to pro...
In this paper, we contribute waveform relaxation and iterative splitting methods for sys-tems of par...
Splitting methods constitute a class (numerical) schemes for solving initial value problems. Roughly...
In this paper we describe an iterative operator-splitting method for bounded operators. Our contribu...
In this paper we describe an iterative operator-splitting method for bounded operators. Our contribu...
In this paper, we discuss higher-order operator-splitting methods done by disentanglement methods. T...
In this paper, we contribute higher order operator splitting methods improved by Zassenhaus product....
AbstractIn this paper, we contribute higher order operator splitting methods improved by Zassenhaus ...
In this paper, we contribute higher order operator-splitting method improved by Zassenhaus product. ...
In this paper, we contribute operator-splitting methods improved by the Zassenhaus product for the n...
Abstract. In this article, we combine operator-splitting methods of an iterative and non-iterative t...
In this paper we design higher order time integrators for systems of stiff ordinary differential equ...
AbstractIn this paper we design higher-order time integrators for systems of stiff ordinary differen...
Abstract In this paper, we discuss higher-order operator-splitting methods done by disentanglement m...
In this paper, we discuss higher-order operator-splitting methods done by disentanglement methods. T...
In this article, we combine operator-splitting methods of an iterative and non-iterative type to pro...
In this paper, we contribute waveform relaxation and iterative splitting methods for sys-tems of par...
Splitting methods constitute a class (numerical) schemes for solving initial value problems. Roughly...
In this paper we describe an iterative operator-splitting method for bounded operators. Our contribu...
In this paper we describe an iterative operator-splitting method for bounded operators. Our contribu...
In this paper, we discuss higher-order operator-splitting methods done by disentanglement methods. T...