We describe a new class of asynchronous variational integrators (AVI) for nonlinear elastodynamics. The AVIs are distinguished by the following attributes: (i) The algorithms permit the selection of independent time steps in each element, and the local time steps need not bear an integral relation to each other; (ii) the algorithms derive from a spacetime form of a discrete version of Hamilton’s variational principle. As a consequence of this variational structure, the algorithms conserve local momenta and a local discrete multisymplectic structure exactly. To guide the development of the discretizations, a spacetime multisymplectic formulation of elastodynamics is presented. The variational principle used incorporates both configu...
Many numerical integrators for mechanical system simulation are created by using discrete algorithms...
In this paper, we develop a structure-preserving discretization of the Lagrangian framework for elec...
Many numerical integrators for mechanical system simulation are created by using discrete algorithms...
We describe a new class of asynchronous variational integrators (AVI) for nonlinear elastodynamics....
We describe a new class of asynchronous variational integrators (AVI) for nonlinear elastodynamics....
This thesis develops the theory and implementation of variational integrators for computational soli...
Variational integrators are a class of discretizations for mechanical systems which are derived by d...
The purpose of this paper is to survey some recent advances in variational integrators for both fin...
The purpose of this paper is to survey some recent advances in variational integrators for both fin...
The purpose of this paper is to review and further develop the subject of variational integration al...
The purpose of this paper is to develop variational integrators for conservative mechanical systems ...
This paper gives a review of integration algorithms for finite dimensional mechanical systems that a...
This paper gives a review of integration algorithms for finite dimensional mechanical systems that a...
This paper gives a review of integration algorithms for finite dimensional mechanical systems that a...
Many numerical integrators for mechanical system simulation are created by using discrete algorithms...
Many numerical integrators for mechanical system simulation are created by using discrete algorithms...
In this paper, we develop a structure-preserving discretization of the Lagrangian framework for elec...
Many numerical integrators for mechanical system simulation are created by using discrete algorithms...
We describe a new class of asynchronous variational integrators (AVI) for nonlinear elastodynamics....
We describe a new class of asynchronous variational integrators (AVI) for nonlinear elastodynamics....
This thesis develops the theory and implementation of variational integrators for computational soli...
Variational integrators are a class of discretizations for mechanical systems which are derived by d...
The purpose of this paper is to survey some recent advances in variational integrators for both fin...
The purpose of this paper is to survey some recent advances in variational integrators for both fin...
The purpose of this paper is to review and further develop the subject of variational integration al...
The purpose of this paper is to develop variational integrators for conservative mechanical systems ...
This paper gives a review of integration algorithms for finite dimensional mechanical systems that a...
This paper gives a review of integration algorithms for finite dimensional mechanical systems that a...
This paper gives a review of integration algorithms for finite dimensional mechanical systems that a...
Many numerical integrators for mechanical system simulation are created by using discrete algorithms...
Many numerical integrators for mechanical system simulation are created by using discrete algorithms...
In this paper, we develop a structure-preserving discretization of the Lagrangian framework for elec...
Many numerical integrators for mechanical system simulation are created by using discrete algorithms...