In this paper we discuss the second version of FLECS, a generic, open-source coupling shell that can be used to join two or more arbitrary solvers. In general multidisciplinary computations are very computing-intensive. A remedy against long computing times is large-scale parallelism. The challenge of the present parallelization work is to obtain acceptable computing times and to get rid of severe memory requirements that exist on sequential machines, for the generic flow problems at hand. The aim is to provide a flexible platform for developing new data transfer algorithms and coupling schemes
AbstractThis paper presents several parallelization aspects of Fluid-Structure Interaction (FSI) pro...
A new massively parallel partitioned fluid-structure interaction (FSI) simulation framework, ParaSiF...
This research work evaluates the performance of a Fluid-Structure Interaction (FSI) solver, which is...
In this paper we discuss the second version of FLECS, a generic, open-source coupling shell that can...
Numerical simulations involving multiple, physically different domains can be solved effectively by...
Numerical simulations involving multiple, physically different domains can be solved effectively by ...
Abstract. Numerical simulations involving multiple, physically different domains can be solved effec...
The fluid-structure interaction (FSI) problem has received great attention in the last few years, ma...
This paper discuss a coupling strategy of two different software packages to provide fluid structure...
This paper discuss a coupling strategy of two different software packages to provide fluid structure...
This paper discuss a coupling strategy of two different software packages to provide fluid structure...
The simulation of multi-physics scenarios, in particular fluid-structure interaction has gained mor...
Multi-physics simulations, such as fluid-structure-acoustics interaction (FSA), require a high perf...
Fluid-structure interactions (FSI) are multi-physical phenomena where the dynamics of a fluid flow a...
This contribution describes a partitioned approach for fluid-structure interac-tions (FSI). We use t...
AbstractThis paper presents several parallelization aspects of Fluid-Structure Interaction (FSI) pro...
A new massively parallel partitioned fluid-structure interaction (FSI) simulation framework, ParaSiF...
This research work evaluates the performance of a Fluid-Structure Interaction (FSI) solver, which is...
In this paper we discuss the second version of FLECS, a generic, open-source coupling shell that can...
Numerical simulations involving multiple, physically different domains can be solved effectively by...
Numerical simulations involving multiple, physically different domains can be solved effectively by ...
Abstract. Numerical simulations involving multiple, physically different domains can be solved effec...
The fluid-structure interaction (FSI) problem has received great attention in the last few years, ma...
This paper discuss a coupling strategy of two different software packages to provide fluid structure...
This paper discuss a coupling strategy of two different software packages to provide fluid structure...
This paper discuss a coupling strategy of two different software packages to provide fluid structure...
The simulation of multi-physics scenarios, in particular fluid-structure interaction has gained mor...
Multi-physics simulations, such as fluid-structure-acoustics interaction (FSA), require a high perf...
Fluid-structure interactions (FSI) are multi-physical phenomena where the dynamics of a fluid flow a...
This contribution describes a partitioned approach for fluid-structure interac-tions (FSI). We use t...
AbstractThis paper presents several parallelization aspects of Fluid-Structure Interaction (FSI) pro...
A new massively parallel partitioned fluid-structure interaction (FSI) simulation framework, ParaSiF...
This research work evaluates the performance of a Fluid-Structure Interaction (FSI) solver, which is...