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Numerical Simulation of Wave Field near Submerged Bars by PLIC-VOF Model 被引量:9
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作者 刘诚 刘晓平 蒋昌波 《China Ocean Engineering》 SCIE EI 2005年第3期509-518,共10页
Investigating the wave field near structures in coastal and offshore engineering is of increasing significance. In the present study, simulation is done of the wave profile and flow field for waves propagating over su... Investigating the wave field near structures in coastal and offshore engineering is of increasing significance. In the present study, simulation is done of the wave profile and flow field for waves propagating over submerged bars, using PLIC-VOF (Pieeewise Linear Interface Construction) to trace the free surface of wave and finite difference method to solve vertical 2D Navier-Stokes (N-S) equations. A comparison of the numerical results for two kinds of submerged bars with the experimental ones shows that the PLIC-VOF model used in this study is effective and can compute the wave field precisely. 展开更多
关键词 PLIC- VOF N-S equations finite difference method wave field submerged bars
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Wave decomposition phenomenon and spectrum evolution over submerged bars 被引量:2
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作者 LI Benxia YU Xiping 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2009年第3期82-92,共11页
Wave decomposition phenomenon and spectrum evolution over submerged bars are investigated by a previously developed numerical model. First, the computed free surface displacements of regular waves at various locations... Wave decomposition phenomenon and spectrum evolution over submerged bars are investigated by a previously developed numerical model. First, the computed free surface displacements of regular waves at various locations are compared with the available experimental data to confirm the validity of the numerical model, and satisfactory agreements are obtained. In addition, variations of decomposition characteristics with incident wave parameters and the change of energy spectrum for regular waves are also studied. Then the spectrum evolution of irregular waves over submerged bars, as well as the influence of incident peak wave period and the steepness of the front slope of the bar on spectrum evolution, is investigated. Wave decomposition and spectral shape are found to be significantly influenced by the incident wave conditions. When the upslope of the bar becomes 1:2, the length of the slope becomes shorter and will not benefit the generation of high frequency energy, so spectrum evolution is not significant. 展开更多
关键词 wave decomposition spectrum evolution nonlinear waves irregular waves submerged bars
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