Fluid structure interaction problems in large deformation |
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Authors: | Patrick Le Tallec, Jean-Fr d ric Gerbeau, Patrice Hauret,Marina Vidrascu |
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Affiliation: | aÉcole polytechnique, 91128 Palaiseau cedex, France;bINRIA Rocquencourt, B.P. 105, 78153 Le Chesnay cedex, France;cGraduate Aeronautical Labs, California Institute of Technology, 1200 E California Blvd, Pasadena, CA 91125, USA |
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Abstract: | ![]() The present article deals with the simulation of fluid structure interaction problems in large deformation, and discusses two aspects of their numerical solution: (i) the derivation of energy conserving time integration schemes in presence of fluid structure coupling, moving grids, and nonlinear kinematic constraints such as incompressibility and contact, (ii) the introduction of adequate preconditioners efficiently chaining local fluid and structure solvers. Solutions are proposed, analyzed and tested using nonlinear energy correcting terms, and added mass based Dirichlet Neumann preconditioners. Numerical applications include nonlinear impact problems in elastodynamics and blood flows predictions within flexible arteries. To cite this article: P. Le Tallec et al., C. R. Mecanique 333 (2005). |
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Keywords: | Computational fluid mechanics Nonlinear elastodynamics Time integration Energy conservation Fluid structure interaction Added mass PreconditionerMots-clé s: Mé canique des fluides numé rique É lastodynamique nonliné aire Inté gration en temps Conservation de l'é nergie Interaction fluide structure Masse ajouté e Pré conditionneur |
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