Standard nonlinear schemes for the the simulation of elastodynamic problems have several shortcomings when considering high-speed rotations. To tackle these problems, we use a corotational framework and a corresponding specific linearization to design new energy-conserving numerical schemes. In the two-dimensional case, an algorithm preserving also angular momentum is presented. The existence of a solution for the fully discrete setting of this algorithm is established. Numerical results illustrate the flexibility and efficiency of the proposed algorithms.ou
Following the approach developed for rods in Part 1 of this paper (Pimenta et al. in Comput. Mech. 4...
In this paper, we consider the unilateral frictional contact problem of a hyperelastic body in the c...
A numerical model to deal with nonlinear elastodynamics involving large rotations within the framewo...
Abstract. Linearizations of the Saint Venant-Kirchoff model for elastic bodies are often considered ...
A fully conserving algorithm is developed in this paper for the integration of the equations of moti...
A fully conserving algorithm is developed in this paper for the integration of the equations of moti...
A fully conserving algorithm is developed in this paper for the integration of the equations of moti...
International audienceThis paper presents an energy-momentum method for nonlinear dynamics of 2D Ber...
International audienceThis paper presents an energy-momentum method for nonlinear dynamics of 2D Ber...
We present warp-canceling corotation, a nonlinear finite element formulation for elastodynamic simul...
We present warp-canceling corotation, a nonlinear finite element formulation for elastodynamic simul...
The analysis and implementation of a step-by-step algorithm conceived to preserve scalar invariants ...
Following the approach developed for rods in Part 1 of this paper (Pimenta et al. in Comput. Mech. 4...
In this paper, we consider the unilateral frictional contact problem of a hyperelastic body in the c...
In this paper, we consider the unilateral frictional contact problem of a hyperelastic body in the c...
Following the approach developed for rods in Part 1 of this paper (Pimenta et al. in Comput. Mech. 4...
In this paper, we consider the unilateral frictional contact problem of a hyperelastic body in the c...
A numerical model to deal with nonlinear elastodynamics involving large rotations within the framewo...
Abstract. Linearizations of the Saint Venant-Kirchoff model for elastic bodies are often considered ...
A fully conserving algorithm is developed in this paper for the integration of the equations of moti...
A fully conserving algorithm is developed in this paper for the integration of the equations of moti...
A fully conserving algorithm is developed in this paper for the integration of the equations of moti...
International audienceThis paper presents an energy-momentum method for nonlinear dynamics of 2D Ber...
International audienceThis paper presents an energy-momentum method for nonlinear dynamics of 2D Ber...
We present warp-canceling corotation, a nonlinear finite element formulation for elastodynamic simul...
We present warp-canceling corotation, a nonlinear finite element formulation for elastodynamic simul...
The analysis and implementation of a step-by-step algorithm conceived to preserve scalar invariants ...
Following the approach developed for rods in Part 1 of this paper (Pimenta et al. in Comput. Mech. 4...
In this paper, we consider the unilateral frictional contact problem of a hyperelastic body in the c...
In this paper, we consider the unilateral frictional contact problem of a hyperelastic body in the c...
Following the approach developed for rods in Part 1 of this paper (Pimenta et al. in Comput. Mech. 4...
In this paper, we consider the unilateral frictional contact problem of a hyperelastic body in the c...
A numerical model to deal with nonlinear elastodynamics involving large rotations within the framewo...