In this work, we present a new monolithic strategy for solving fluid-structure interaction problems involving incompressible fluids, within the context of the finite element method. This strategy, similar to the continuum dynamics, conserves certain properties, and thus provides a rational basis for the design of the time-stepping strategy; detailed proofs of the conservation of these properties are provided. The proposed algorithm works with displacement and velocity variables for the structure and fluid, respectively, and introduces no new variables to enforce velocity or traction continuity. Any existing structural dynamics algorithm can be used without change in the proposed method. Use of the exact tangent stiffness matrix ensures that...
Finite element techniques for solving the problem of fluid-structure interaction of an elastic solid...
none3In this paper we present the results of computations of fluid-structure interaction of an incom...
In this article, we present a fully Eulerian monolithic numerical method for simulating fluid-struct...
In this work, we present a new monolithic strategy for solving fluid-structure interaction problems ...
This paper compares partitioned and monolithic solution procedures for the numerical simulation of f...
The conservation laws of continuum mechanic written in an Eulerian frame make no difference between ...
A monolithic FSI method is presented. A standard piston problem is considered as test case. The pist...
Current work presents a monolithic method for the solution of fluid–structure interaction problems i...
This paper describes a new monolithic approach based on the Pressure Poisson Equation (PPE) to solve...
Concurrent numerical methods for fluid–structure interaction problems are typically based on partiti...
A monolithic method for numerically solving fluid--structure interactions between viscous flow on an...
We present a parallel time-stepping method for fluid–structure interactions. The interaction between...
This extended abstract presents a coupling method for the Fluid-Structure Interaction (FSI) problem,...
Our aim was to develop some partitioned procedures and monolithic semi-implicit algorithms for solvi...
International audienceThe conservation laws of continuum mechanic are naturally written in an Euleri...
Finite element techniques for solving the problem of fluid-structure interaction of an elastic solid...
none3In this paper we present the results of computations of fluid-structure interaction of an incom...
In this article, we present a fully Eulerian monolithic numerical method for simulating fluid-struct...
In this work, we present a new monolithic strategy for solving fluid-structure interaction problems ...
This paper compares partitioned and monolithic solution procedures for the numerical simulation of f...
The conservation laws of continuum mechanic written in an Eulerian frame make no difference between ...
A monolithic FSI method is presented. A standard piston problem is considered as test case. The pist...
Current work presents a monolithic method for the solution of fluid–structure interaction problems i...
This paper describes a new monolithic approach based on the Pressure Poisson Equation (PPE) to solve...
Concurrent numerical methods for fluid–structure interaction problems are typically based on partiti...
A monolithic method for numerically solving fluid--structure interactions between viscous flow on an...
We present a parallel time-stepping method for fluid–structure interactions. The interaction between...
This extended abstract presents a coupling method for the Fluid-Structure Interaction (FSI) problem,...
Our aim was to develop some partitioned procedures and monolithic semi-implicit algorithms for solvi...
International audienceThe conservation laws of continuum mechanic are naturally written in an Euleri...
Finite element techniques for solving the problem of fluid-structure interaction of an elastic solid...
none3In this paper we present the results of computations of fluid-structure interaction of an incom...
In this article, we present a fully Eulerian monolithic numerical method for simulating fluid-struct...