International audienceThree-dimensional real-life simulations are generally unsteady and involve moving geometries. Industry is currently very far from performing such body-fitted simulations on a daily basis, mainly due to the robustness of the moving mesh algorithm and their extensive computational cost. A moving mesh algorithm coupled to local mesh optimizations has proved its efficiency in dealing with large deformation of the mesh without re-meshing. In this paper, the coupling of this algorithm with two mesh deformation techniques is studied: an elasticity PDE-based one and an explicit Inverse Distance Weighted interpolation one, and both techniques are compared. The efficiency of this method is demonstrated on challenging test cases,...
Nowadays, Computational Fluid Dynamic (CFD) codes are widely used in different industrial fields. Al...
AbstractSimulating unsteady flow phenomena involving moving boundaries is a challenging task, one ke...
The computational modelling of fluid-structure interaction phenomena is currently gaining importance...
International audienceThree-dimensional real-life simulations are generally unsteady and involve mov...
AbstractThree-dimensional real-life simulations are generally unsteady and involve moving geometries...
International audienceThis paper deals with numerical simulations involving three-dimensional moving...
The three-dimensional simulation of physical phenomena involving moving bodies undergoing large disp...
International audienceThis work is motivated by the success of the adaptive finite element methods i...
A simple and efficient moving grid technique is proposed for computing unsteady flow problems with g...
An explicit mesh motion algorithm based on inverse distance weighting interpolation is presented. Th...
A new point-by-point mesh movement algorithm is developed for the deformation of unstructured grids....
Today, one of the major limitations of the finite element method remains its high computational cost...
Time dependent simulations are still a challenge for industry, notably due to problems raised by mov...
An unstructured, three-dimensional, moving-mesh algorithm is developed for free-surface flow simulat...
International audienceMany applications involving Fluid-Structure Interaction (FSI) feature large di...
Nowadays, Computational Fluid Dynamic (CFD) codes are widely used in different industrial fields. Al...
AbstractSimulating unsteady flow phenomena involving moving boundaries is a challenging task, one ke...
The computational modelling of fluid-structure interaction phenomena is currently gaining importance...
International audienceThree-dimensional real-life simulations are generally unsteady and involve mov...
AbstractThree-dimensional real-life simulations are generally unsteady and involve moving geometries...
International audienceThis paper deals with numerical simulations involving three-dimensional moving...
The three-dimensional simulation of physical phenomena involving moving bodies undergoing large disp...
International audienceThis work is motivated by the success of the adaptive finite element methods i...
A simple and efficient moving grid technique is proposed for computing unsteady flow problems with g...
An explicit mesh motion algorithm based on inverse distance weighting interpolation is presented. Th...
A new point-by-point mesh movement algorithm is developed for the deformation of unstructured grids....
Today, one of the major limitations of the finite element method remains its high computational cost...
Time dependent simulations are still a challenge for industry, notably due to problems raised by mov...
An unstructured, three-dimensional, moving-mesh algorithm is developed for free-surface flow simulat...
International audienceMany applications involving Fluid-Structure Interaction (FSI) feature large di...
Nowadays, Computational Fluid Dynamic (CFD) codes are widely used in different industrial fields. Al...
AbstractSimulating unsteady flow phenomena involving moving boundaries is a challenging task, one ke...
The computational modelling of fluid-structure interaction phenomena is currently gaining importance...