Computer simulations of many physical phenomena rely on approximations by models with a finite number of unknowns. The number of these parameters determines the computational effort needed for the simulation. On the other hand, a larger number of unknowns can improve the precision of the simulation. The adaptive finite element method (AFEM) is an algorithm for optimizing the choice of parameters so accurate simulation results can be obtained with as little computational effort as possible
The philosophy of approximation of the finite element method and its corresponding object oriented i...
Abstract—The use of the mechanical simulation (in particular the finite element analysis) requires t...
This is a survey on the theory of adaptive finite element methods (AFEM), which are fundamental in m...
Computer simulations of many physical phenomena rely on approximations by models with a finite numbe...
Abstract. We analyze an adaptive finite element method (AFEM) which does not require an exact comput...
Finite Element Method (FEM) is the most widely used numerical simulation method for solving problems...
Most finite element packages provide means to generate meshes automatically. However, the user is us...
The subject of this thesis is an adaptive finite element method for the different kinds of partial d...
A class of degenerate convex minimization problems allows for some adaptive finite element method (A...
A class of degenerate convex minimization problems allows for some adaptive finite element method (A...
Abstract.Adaptive Finite Element Methods (AFEM) are numerical proce-dures that approximate the solut...
The use of unfitted finite element methods (FEMs) is an appealing approach for different reasons. T...
We propose an adaptive finite element algorithm to approximate solutions of elliptic problems whose ...
AbstractWe present a strategy to develop a mesh manipulation module of a flexible and robust adaptiv...
In our accompanying paper (K. Harriman et al., Electrochem. Commun. 2 (2000) 150) we demonstrated ho...
The philosophy of approximation of the finite element method and its corresponding object oriented i...
Abstract—The use of the mechanical simulation (in particular the finite element analysis) requires t...
This is a survey on the theory of adaptive finite element methods (AFEM), which are fundamental in m...
Computer simulations of many physical phenomena rely on approximations by models with a finite numbe...
Abstract. We analyze an adaptive finite element method (AFEM) which does not require an exact comput...
Finite Element Method (FEM) is the most widely used numerical simulation method for solving problems...
Most finite element packages provide means to generate meshes automatically. However, the user is us...
The subject of this thesis is an adaptive finite element method for the different kinds of partial d...
A class of degenerate convex minimization problems allows for some adaptive finite element method (A...
A class of degenerate convex minimization problems allows for some adaptive finite element method (A...
Abstract.Adaptive Finite Element Methods (AFEM) are numerical proce-dures that approximate the solut...
The use of unfitted finite element methods (FEMs) is an appealing approach for different reasons. T...
We propose an adaptive finite element algorithm to approximate solutions of elliptic problems whose ...
AbstractWe present a strategy to develop a mesh manipulation module of a flexible and robust adaptiv...
In our accompanying paper (K. Harriman et al., Electrochem. Commun. 2 (2000) 150) we demonstrated ho...
The philosophy of approximation of the finite element method and its corresponding object oriented i...
Abstract—The use of the mechanical simulation (in particular the finite element analysis) requires t...
This is a survey on the theory of adaptive finite element methods (AFEM), which are fundamental in m...