Direct numerical simulation of the non-linear equations, governing a fluid-structure system, relies heavily on the properties of the coupled system and the corresponding iterative solver. The purpose of this paper is to introduce a flexible and robust multilevel finite element algorithm that can be used to study the behavior of a fully coupled fluid-structure system. The method relies on the domain decomposition characteristics of the multigrid Vanka-solvers, which decompose the complex global domain into the finite element local sub-domains and then compute the global solution iteratively. This particular methodology allows us to solve easily this coupled system over a fluid-solid domain which consists of a set of subdomains from different mesh levels with conforming or non-conforming fem approximations. The multigrid projection and restriction operators are used to impose the matching between the extended fluid and solid velocity field.

E.Aulisa, S.Manservisi, P. Seshaiyer (2008). A multilevel domain decomposition approach to solving coupled applications in computational fluid dynamics. INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 8, 139-145 [10.1002/fld.1589].

A multilevel domain decomposition approach to solving coupled applications in computational fluid dynamics

MANSERVISI, SANDRO;
2008

Abstract

Direct numerical simulation of the non-linear equations, governing a fluid-structure system, relies heavily on the properties of the coupled system and the corresponding iterative solver. The purpose of this paper is to introduce a flexible and robust multilevel finite element algorithm that can be used to study the behavior of a fully coupled fluid-structure system. The method relies on the domain decomposition characteristics of the multigrid Vanka-solvers, which decompose the complex global domain into the finite element local sub-domains and then compute the global solution iteratively. This particular methodology allows us to solve easily this coupled system over a fluid-solid domain which consists of a set of subdomains from different mesh levels with conforming or non-conforming fem approximations. The multigrid projection and restriction operators are used to impose the matching between the extended fluid and solid velocity field.
2008
E.Aulisa, S.Manservisi, P. Seshaiyer (2008). A multilevel domain decomposition approach to solving coupled applications in computational fluid dynamics. INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 8, 139-145 [10.1002/fld.1589].
E.Aulisa; S.Manservisi; P. Seshaiyer
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/66358
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