Global error bounds are derived for multistep time discretizations of fully nonlinear evolution equations on infinite dimensional spaces. In contrast to earlier studies, the analysis presented here is not based on linearization procedures but on the fully nonlinear framework of logarithmic Lipschitz constants and nonlinear semigroups. The error bounds reveal how the contractive or dissipative behavior of the vector field, governing the evolution, and the properties of the multistep method influence the convergence. A multistep method which is consistent of order p is proven to be convergent of the same order when the vector field is contractive or strictly dissipative, i.e., of the same order as in the ODE-setting. In the contractive contex...
We study the backward Euler method with variable time-steps for abstract evolution equations in Hilb...
Large time behavior of solutions to abstract differential equations is studied. The results give suf...
Splitting methods are widely used as temporal discretizations of evolution equations. Such methods u...
The theme of this thesis is to study discretizations of nonlinear dissipative evolution equations, w...
Global error bounds are derived for Runge-Kutta time discretizations of fully nonlinear evolution eq...
The paper deals with discretisation methods for nonlinear operator equations written as abstract non...
Convergence and stability of initial and boundary value multistep methods are analyzed for a class o...
Convergence and stability of initial and boundary value multistep methods are analyzed for a class o...
In this paper we prove the convergence of algebraically stable DIRK schemes applied to dissipative e...
The effect of temporal discretisation on dissipative differential equations is analysed. We discuss ...
The effect of temporal discretisation on dissipative differential equations is analysed. We discuss ...
The effect of temporal discretisation on dissipative differential equations is analysed. We discuss ...
The effect of temporal discretisation on dissipative differential equations is analysed. We discuss ...
We study the backward Euler method with variable time steps for abstract evolution equations in Hilb...
We study the backward Euler method with variable time-steps for abstract evolution equations in Hilb...
We study the backward Euler method with variable time-steps for abstract evolution equations in Hilb...
Large time behavior of solutions to abstract differential equations is studied. The results give suf...
Splitting methods are widely used as temporal discretizations of evolution equations. Such methods u...
The theme of this thesis is to study discretizations of nonlinear dissipative evolution equations, w...
Global error bounds are derived for Runge-Kutta time discretizations of fully nonlinear evolution eq...
The paper deals with discretisation methods for nonlinear operator equations written as abstract non...
Convergence and stability of initial and boundary value multistep methods are analyzed for a class o...
Convergence and stability of initial and boundary value multistep methods are analyzed for a class o...
In this paper we prove the convergence of algebraically stable DIRK schemes applied to dissipative e...
The effect of temporal discretisation on dissipative differential equations is analysed. We discuss ...
The effect of temporal discretisation on dissipative differential equations is analysed. We discuss ...
The effect of temporal discretisation on dissipative differential equations is analysed. We discuss ...
The effect of temporal discretisation on dissipative differential equations is analysed. We discuss ...
We study the backward Euler method with variable time steps for abstract evolution equations in Hilb...
We study the backward Euler method with variable time-steps for abstract evolution equations in Hilb...
We study the backward Euler method with variable time-steps for abstract evolution equations in Hilb...
Large time behavior of solutions to abstract differential equations is studied. The results give suf...
Splitting methods are widely used as temporal discretizations of evolution equations. Such methods u...