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Article Dans Une Revue Journal of Hydrodynamics Année : 2010

High-order finite difference solution for 3D nonlinear wave-structure interaction

Résumé

This contribution presents our recent progress on developing an efficient fully-nonlinear potential flow model for simulating 3D wave-wave and wave-structure interaction over arbitrary depths (i.e. in coastal and offshore environment). The model is based on a high-order finite difference scheme OceanWave3D presented in [1, 2]. A nonlinear decomposition of the solution into incident and scattered fields is used to increase the efficiency of the wave-structure interaction problem resolution. Application of the method to the diffraction of nonlinear waves around a fixed, bottom mounted circular cylinder are presented and compared to the fully nonlinear potential code XWAVE as well as to experiments.

Dates et versions

hal-01145092 , version 1 (23-04-2015)

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G. Ducrozet, H.B. Bingham, A.P. Engsig-Karup, P. Ferrant. High-order finite difference solution for 3D nonlinear wave-structure interaction. Journal of Hydrodynamics, 2010, pp.225-230. ⟨10.1016/S1001-6058(09)60198-0⟩. ⟨hal-01145092⟩
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