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Shock-Capturing Boussinesq Modelling of Broken Wave Characteristics Near a Vertical Seawall

机译:垂直海堤附近冲击波捕获的Boussinesq建模

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Broken wave characteristics in front of a vertical seawall were modeled and studied using a shock-capturing Boussinesq wave model FUNWAVE-TVD. Validation with the experimental data confirmed the capability of FUNWAVE-TVD in predicting the wave characteristics via the shock-capturing method. Compared to the results obtained from the Boussinesq model coupled with an empirical breaking model, the advantage of the present shock-capturing model for the broken waves near a vertical seawall was clearly revealed. A preliminary investigation of the effects of the key parameters, such as the incident wave height, water level at the seawall, and seabed slope, on the wave kinematics (i.e., the root mean square of the surface fluctuations and depth-averaged horizontal velocity) near the seawall was then conducted through a series of numerical experiments. The numerical results indicate the incident wave height and the water depth at the seawall are the important parameters in determining the magnitude of the wave kinematics, while the effect of the seabed slope seems to be insignificant. The role of the breaking point locations is also highlighted in this study, in which case further breaking can reduce the wave kinematics significantly for the coastal structures predominately subjected to broken waves.
机译:使用捕捉振动的Boussinesq波浪模型FUNWAVE-TVD对垂直海堤前的波浪特征进行建模和研究。实验数据的验证证实了FUNWAVE-TVD通过震荡捕获方法预测波浪特征的能力。与从Boussinesq模型和经验破裂模型获得的结果相比较,可以清楚地看到本冲击捕获模型对垂直海堤附近的破裂波的优势。初步研究了关键参数(如入射波高,海堤水位和海床坡度)对波浪运动学的影响(即,表面波动的均方根和深度平均水平速度)然后通过一系列数值实验对海堤附近进行了研究。数值结果表明,入射波的高度和海堤的水深是确定波浪运动学幅度的重要参数,而海床坡度的影响似乎微不足道。这项研究还强调了断点位置的作用,在这种情况下,对于主要受到破碎波影响的沿海结构,进一步破碎可以大大降低波浪运动学。

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