用boussinesq波浪模型模拟垂直壁面波浪过顶率

Moon Su Kwak, Nobuhisa Kobayashi
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摘要

近年来,Boussinesq方程模型被用于波浪过顶的研究。该模式的优点是,与NLSW模式或NS模式相比,可以模拟更宽的波场到中间水深。该模型可以设置离结构较远的近海边界条件,从而可以计算出波浪破碎的开始,并且可以很好地再现波浪从前海岸传播的情况。当波浪向浅水传播时,波浪的非线性随振幅与水深之比的增大而增大。为了模拟浅水中的波浪变换,需要一个强非线性的波浪模型。此外,波浪过顶对策的研究还需要能够在大范围内模拟波浪场的二维波浪模型。本文通过在全非线性Bussinesq波模型FUNWAVE-TVD模型中加入一个子程序,建立了能够计算水平波场中波浪过顶率的计算机模拟模型。子程序通过对EurOtop(2018)和Goda(2009)的经验公式的波浪过顶率方程进行编码组成,这些公式是通过多次实验和现场观测得到的。通过对竖直壁面上不规则波的过顶率的计算机模拟结果与韩国新实验结果的对比,对模型进行了验证。在接下来的原型计算中,假设长度比例尺为1/36(模型/原型)的弗劳德相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPUTER SIMULATION OF WAVE OVERTOPPING RATE ON VERTICAL WALL BY BOUSSINESQ WAVE MODEL
Recently, Boussinesq equation models have been used in research on wave overtopping. The advantage of this model is that compared to the NLSW model or the NS model, it is possible to simulate a wider wave field to the intermediate water depth. This model can set offshore boundary conditions further away from the structure, so that the start of the wave breaking can be figured out and the wave propagation from the foreshore can be well reproduced. When waves propagate to the shallow water, the nonlinearity of the waves is increasing as the ratio of amplitude and water depth increases. In order to simulate the wave transformation in shallow water, a strong nonlinear wave model is required. In addition, the 2D wave model capable of simulation of wave field in a wide area is needed for study of the countermeasures of wave overtopping. In this study, a computer simulation model capable of calculating the wave overtopping rate in a horizontal wave field was established by adding a subroutine to the FUNWAVE-TVD model, a fully nonlinear Bussinesq wave model. The subroutine was composed by coding the wave overtopping rate equations of EurOtop (2018) and Goda (2009)'s empirical formulas obtained from many experimental and field observations. The verification of the model was carried out by comparing the computer simulation results of the wave overtopping rate of irregular waves on the vertical wall with new experiment results in Korea. Froude similitude with a length scale of 1/36(model/prototype) is assumed in the following prototype computations.
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