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Applying Finite Difference Method to Simulate the Performance of a Perforated Breakwater Under Regular Waves 被引量:2

采用有限差分方法模拟穿孔式防波堤规则波中水动力性能研究(英文)
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摘要 Using a discretized finite difference method, a numerical model was developed to study the interaction of regular waves with a perforated breakwater. Considering a non-viscous, non-rotational fluid, the governing equations of Laplacian velocity potential were developed, and specific conditions for every single boundary were defined. The final developed model was evaluated based on an existing experimental result. The evaluated model was used to simulate the condition for various wave periods from 0.6 to 2 s. The reflection coefficient and transmission coefficient of waves were examined with different breakwater porosities, wave steepnesses, and angular frequencies. The results show that the developed model can suitably present the effect of the structural and hydraulic parameters on the reflection and transmission coefficients. It was also found that with the increase in wave steepness, the reflection coefficient increased logarithmically, while the transmission coefficient decreased logarithmically.
出处 《Journal of Marine Science and Application》 CSCD 2019年第3期314-324,共11页 船舶与海洋工程学报(英文版)
关键词 Perforated BREAKWATER Transmission COEFFICIENT REFLECTION COEFFICIENT Numerical model Finite DIFFERENCE method REGULAR WAVES Perforated breakwater Transmission coefficient Reflection coefficient Numerical model Finite difference method Regular waves
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