In multi-physics numerical computations a good choice of code coupling schemes is required. Several methods are possible like: an explicit synchronous scheme an Euler implicit method and no interpolation on velocity pressure; an explicit asynchonous scheme using a Crank-Nicholson time integration scheme and interpolation on velocity and pressure; an implicit scheme using a fixed iterative method. In the present paper these different schemes are compared for application in fluid structure interaction field. In the first part numerical coupling schemes are presented. Then their capability to ensure energy conservation is discussed according to numerical results obtained in analytical test cases. Finally application of coupling process to fluid structure interaction problems is investigated and results are discussed in terms of added mass and damping induced by a fluid for a structure vibrating in fluid at rest.
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ASME 2005 Pressure Vessels and Piping Conference
July 17–21, 2005
Denver, Colorado, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
0-7918-4189-8
PROCEEDINGS PAPER
Explicit and Implicit Code Coupling Schemes in Fluid Structure Interaction
E. Longatte,
E. Longatte
Electricite´ de France, Chatou, France
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Z. Bendjeddou,
Z. Bendjeddou
Electricite´ de France, Chatou, France
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V. Verreman,
V. Verreman
Electricite´ de France, Chatou, France
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M. Souli
M. Souli
Universite´ des Sciences et Technologies de Lille I, Lille, France
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E. Longatte
Electricite´ de France, Chatou, France
Z. Bendjeddou
Electricite´ de France, Chatou, France
V. Verreman
Electricite´ de France, Chatou, France
M. Souli
Universite´ des Sciences et Technologies de Lille I, Lille, France
Paper No:
PVP2005-71647, pp. 241-250; 10 pages
Published Online:
July 29, 2008
Citation
Longatte, E, Bendjeddou, Z, Verreman, V, & Souli, M. "Explicit and Implicit Code Coupling Schemes in Fluid Structure Interaction." Proceedings of the ASME 2005 Pressure Vessels and Piping Conference. Volume 4: Fluid Structure Interaction. Denver, Colorado, USA. July 17–21, 2005. pp. 241-250. ASME. https://doi.org/10.1115/PVP2005-71647
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