In this paper we present the efficient parallel implementation of elastoplastic problems based on the TFETI (Total Finite Element Tearing and Interconnecting) domain decomposition method. This approach allow us to use parallel solution and compute this nonlinear problem on the supercomputers and decrease the solution time and compute problems with millions of DOFs. In our approach we consider an associated elastoplastic model with the von Mises plastic criterion and the combination of linear isotropic-kinematic hardening law. This model is discretized by the implicit Euler method in time and by the finite element method in space. We consider the system of nonlinear equations with a strongly semismooth and strongly monotone operator. The sem...
A Total FETI (TFETI)-based domain decomposition algorithm with preconditioning by a natural coarse g...
This research is directed toward the analysis of large, three dimensional, nonlinear dynamic problem...
In this paper we are presenting our PermonCube and FLLOP packages, and their use for massively paral...
Abstract—In this paper we present the efficient parallel implementation of elastoplastic problems ba...
We propose an algorithm for the efficient parallel implementation of elastoplastic problems with har...
In this paper we present an algorithm for the parallel solution of the rate-independent elasto-plast...
This paper illustrates parallel solution of elastoplastic problems with hardening based on the TFETI...
A multigrid method is described that can solve history dependent, material nonlinear solid mechanics...
A multigrid method is described that can solve history dependent, material nonlinear solid mechanics...
We describe an efficient massively parallel implementation of our variant of the FETI type domain de...
Abstract. Highly scalable parallel domain decomposition methods for elliptic partial differential eq...
AbstractWe describe an efficient massively parallel implementation of our variant of the FETI type d...
Fully vectorized MATLAB implementation of various elastoplastic problems formulated in terms of disp...
In this paper, a free energy-based formulation incorporating the effect of kinematic hardening is pr...
In this paper a strategy to perform elastoplastic analysis with linear kinematic hardening for von ...
A Total FETI (TFETI)-based domain decomposition algorithm with preconditioning by a natural coarse g...
This research is directed toward the analysis of large, three dimensional, nonlinear dynamic problem...
In this paper we are presenting our PermonCube and FLLOP packages, and their use for massively paral...
Abstract—In this paper we present the efficient parallel implementation of elastoplastic problems ba...
We propose an algorithm for the efficient parallel implementation of elastoplastic problems with har...
In this paper we present an algorithm for the parallel solution of the rate-independent elasto-plast...
This paper illustrates parallel solution of elastoplastic problems with hardening based on the TFETI...
A multigrid method is described that can solve history dependent, material nonlinear solid mechanics...
A multigrid method is described that can solve history dependent, material nonlinear solid mechanics...
We describe an efficient massively parallel implementation of our variant of the FETI type domain de...
Abstract. Highly scalable parallel domain decomposition methods for elliptic partial differential eq...
AbstractWe describe an efficient massively parallel implementation of our variant of the FETI type d...
Fully vectorized MATLAB implementation of various elastoplastic problems formulated in terms of disp...
In this paper, a free energy-based formulation incorporating the effect of kinematic hardening is pr...
In this paper a strategy to perform elastoplastic analysis with linear kinematic hardening for von ...
A Total FETI (TFETI)-based domain decomposition algorithm with preconditioning by a natural coarse g...
This research is directed toward the analysis of large, three dimensional, nonlinear dynamic problem...
In this paper we are presenting our PermonCube and FLLOP packages, and their use for massively paral...