AbstractThis paper reviews the research work that has been done to implement the finite element method for solving partial differential equations on the ICL distributed array processor (DAP). A brief outline of the principle features of the method is given, followed by details of the novel techniques required for implementation on the highly parallel architecture. Various methods of solution of the finite element equations are discussed; both direct and iterative techniques are included. The current state-of-the-art favours the use of the preconditioned conjugate gradient method. Some suggestions for future research work on parallel finite element methods are made
Many science and engineering problems can be described by systems of partial differential equations....
This paper presents a comparative study on two different direct parallel solution strategies for the...
This paper describes the use of a parallel computer system in applying a finite difference method to...
AbstractThis paper reviews the research work that has been done to implement the finite element meth...
Abstract: The parallel variant of iterative method for hp-schemes obtained in the case of ...
Due to their low cost and high expansion capabilities, distributed memory parallel computers, consis...
Research has continued with excellent progress and new results on methodology and algorithms. We hav...
We study the costs incurred by an implementation of the hp-version of the finite element for solving...
The parallel version of precondition techniques is developed for matrices arising from the Galer...
AbstractWe discuss some aspects of implementing the finite-element method on parallel computers with...
AbstractThe report presents some results in solving finite element equations via a parallel version ...
[[abstract]]The finite element method is widely applied to many domains, such as engineering, atmolo...
Many science and engineering problems can be described by systems of partial differential equations....
This paper deals with the application of domain decomposition methods for the parallel solution...
Current parallel processing aproaches in finite element analysis can be roughly classified into two ...
Many science and engineering problems can be described by systems of partial differential equations....
This paper presents a comparative study on two different direct parallel solution strategies for the...
This paper describes the use of a parallel computer system in applying a finite difference method to...
AbstractThis paper reviews the research work that has been done to implement the finite element meth...
Abstract: The parallel variant of iterative method for hp-schemes obtained in the case of ...
Due to their low cost and high expansion capabilities, distributed memory parallel computers, consis...
Research has continued with excellent progress and new results on methodology and algorithms. We hav...
We study the costs incurred by an implementation of the hp-version of the finite element for solving...
The parallel version of precondition techniques is developed for matrices arising from the Galer...
AbstractWe discuss some aspects of implementing the finite-element method on parallel computers with...
AbstractThe report presents some results in solving finite element equations via a parallel version ...
[[abstract]]The finite element method is widely applied to many domains, such as engineering, atmolo...
Many science and engineering problems can be described by systems of partial differential equations....
This paper deals with the application of domain decomposition methods for the parallel solution...
Current parallel processing aproaches in finite element analysis can be roughly classified into two ...
Many science and engineering problems can be described by systems of partial differential equations....
This paper presents a comparative study on two different direct parallel solution strategies for the...
This paper describes the use of a parallel computer system in applying a finite difference method to...