We present a loosely coupled scheme for the numerical simulation of the cardiac electro-fluid-structure interaction problem, whose solution is typically computationally intensive due to the need to suitably treat the coupling of the different submodels. Our scheme relies on a segregated treatment of the subproblems, in particular on an explicit Robin-Neumann algorithm for the fluid-structure interaction, aiming at reducing the computational burden of numerical simulations. The results, both in an ideal and a realistic cardiac setting, show that the proposed scheme is stable at the regimes typical of cardiac simulations. From a comparison with a scheme with implicit fluid-structure interaction, it emerges that, while conservation properties ...
Dans cette thèse, nous proposons et analysons des méthodes numériques partitionnées pour la simulati...
We propose and numerically assess three segregated (partitioned) algorithms for the numerical soluti...
In this work, we apply a fluid-structure interaction method to a long axis heart valve simulation. ...
In this thesis we focus on the numerical analysis and the development of efficient partitioned algor...
We review and compare different fluid-structure interaction (FSI) numerical methods in the context ...
International audienceIn this work we propose a new approach to the loosely coupled time-marching of...
The mathematical modeling of the heart involves several challenges, which are intrinsically related ...
The resolution of coupled problems in a clinical environment is still a challenging task, in part be...
Numerical simulations are a powerful tool in investigation of flow and structure dynamics in biolog...
International audienceWe are interested in the simulation of blood flows in large arteries. In the f...
: We propose a mathematical and numerical model for the simulation of the heart function that couple...
The computational modelling of the heart motion within a cardiac cycle is an extremely challenging p...
In this thesis we present the numerical analysis and the development of partitioned algorithms in or...
AbstractA new method for the calculation of fluid-structure interaction (FSI) of highly flexible bod...
This work focuses on the development of computational methods for the simulation of the propagation ...
Dans cette thèse, nous proposons et analysons des méthodes numériques partitionnées pour la simulati...
We propose and numerically assess three segregated (partitioned) algorithms for the numerical soluti...
In this work, we apply a fluid-structure interaction method to a long axis heart valve simulation. ...
In this thesis we focus on the numerical analysis and the development of efficient partitioned algor...
We review and compare different fluid-structure interaction (FSI) numerical methods in the context ...
International audienceIn this work we propose a new approach to the loosely coupled time-marching of...
The mathematical modeling of the heart involves several challenges, which are intrinsically related ...
The resolution of coupled problems in a clinical environment is still a challenging task, in part be...
Numerical simulations are a powerful tool in investigation of flow and structure dynamics in biolog...
International audienceWe are interested in the simulation of blood flows in large arteries. In the f...
: We propose a mathematical and numerical model for the simulation of the heart function that couple...
The computational modelling of the heart motion within a cardiac cycle is an extremely challenging p...
In this thesis we present the numerical analysis and the development of partitioned algorithms in or...
AbstractA new method for the calculation of fluid-structure interaction (FSI) of highly flexible bod...
This work focuses on the development of computational methods for the simulation of the propagation ...
Dans cette thèse, nous proposons et analysons des méthodes numériques partitionnées pour la simulati...
We propose and numerically assess three segregated (partitioned) algorithms for the numerical soluti...
In this work, we apply a fluid-structure interaction method to a long axis heart valve simulation. ...