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Numerical Simulation of a Sandy Seabed Response to Water Surface Waves Propagating on Current

机译:沙质海床对水面波在水流中响应的数值模拟

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An integrated numerical model is developed to study wave and current-induced seabed response and liquefaction in a flat seabed. The velocity-inlet wave-generating method is adopted in the present study and the finite difference method is employed to solve the Reynolds-averaged Navier-Stokes equations with k -ε turbulence closure. The model validation demonstrates the capacity of the present model. The parametrical study reveals that the increase of current velocity tends to elongate the wave trough and alleviate the corresponding suction force on the seabed, leading to a decrease in liquefaction depth, while the width of the liquefaction area is enlarged simultaneously. This goes against previous studies, which ignored fluid viscosity, turbulence and bed friction.
机译:建立了一个综合的数值模型来研究波浪和电流引起的海床在平坦海床上的响应和液化。本研究采用速度入口波产生方法,采用有限差分法求解具有k-ε湍流闭塞的雷诺平均Navier-Stokes方程。模型验证证明了本模型的能力。参数研究表明,流速的增加趋向于拉长波谷并减轻海床上相应的吸力,从而导致液化深度减小,而液化区域的宽度同时增大。这与先前的研究相反,后者忽略了流体粘度,湍流和床层摩擦。

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