Finite Element Analysis for Effects of Incident Wave Angle and Seabed on Hydrodynamic Characteristics of Buoy

Liu Rong1,2、 Zheng Yonghong1、 You Yage1、 Sun Xiaoyan1,2

Strategic Study of CAE ›› 2005, Vol. 7 ›› Issue (3) : 42-48.

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PDF(7964 KB)
Strategic Study of CAE ›› 2005, Vol. 7 ›› Issue (3) : 42-48.
Academic Papers

Finite Element Analysis for Effects of Incident Wave Angle and Seabed on Hydrodynamic Characteristics of Buoy

  • Liu Rong1,2、 Zheng Yonghong1、 You Yage1、 Sun Xiaoyan1,2

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Abstract

Effects of incident wave angle and complicated topography on hydrodynamic characteristics of a buoy are studied using the Finite Element Method (FEM). The hydrodynamic coefficients of different conditions are acquired. The correctness of the numerical method is verified through a comparison with analytical results of a simple seabed. In order to improve the efficiency of the analysis, the BiCGStab algorithm, considered to be among the most powerful algorithm in solving linear systems, is employed. The results presented here will supply some important information for designs of ocean structures.

Keywords

oblique waves / buoy / complex topography / FEM

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Liu Rong,Zheng Yonghong,You Yage,Sun Xiaoyan,. Finite Element Analysis for Effects of Incident Wave Angle and Seabed on Hydrodynamic Characteristics of Buoy. Strategic Study of CAE, 2005, 7(3): 42‒48
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