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An application of Boussinesq equations to Bragg reflection of irregular waves

机译:Boussinesq方程在不规则波布拉格反射中的应用。

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A numerical model based on the second-order fully nonlinear Boussinesq equations of Wei et al. [1995. Journal of Waterway, Port, Coastal and Ocean Engineering 121 (5), 251-263] is developed to simulate the Bragg reflection of both regular and irregular surface waves scattered by submerged bars. Particularly for incident regular waves, the computed results are observed to agree very well with the existing experimental data as presented by Davies and Heathershaw [1984. Journal of Fluid Mechanics 144, 419-446] and Kirby and Anton [1990. Proceedings of the 22nd International Conference on Coastal Engineering, ASCE, New York, pp. 757-768). In the case of incident irregular waves, the simulated results reveal that the distribution of Bragg reflection from irregular waves becomes more flat than that of regular waves. Due to lack of experimental data, the numerical results for incident irregular waves are compared with those of the evolution equation of the mild-slope equation [Hsu et al., 2002 Proceedings of the 24th Ocean Engineering Conference in Taiwan, pp. 70-77 (in Chinese)]. In addition, several parameters such as the number of bars, the relative height of bars and the spacing of bars affecting Bragg reflection are also discussed.
机译:基于Wei等人的二阶完全非线性Boussinesq方程的数值模型。 [1995。 《水路,港口,沿海与海洋工程杂志》 121(5),251-263]的开发是为了模拟被淹没钢筋散射的规则和不规则表面波的布拉格反射。特别是对于入射的规则波,观察到的计算结果与Davies和Heathershaw [1984.]提出的现有实验数据非常吻合。流体力学杂志144,419-446]以及Kirby和Anton [1990。第22届国际海岸工程国际会议论文集,纽约ASCE,第757-768页)。在入射不规则波的情况下,模拟结果表明,不规则波的布拉格反射分布变得比规则波更平坦。由于缺乏实验数据,将入射不规则波的数值结果与缓坡方程的演化方程进行了比较[Hsu等,2002年,第24届台湾海洋工程会议论文集,第70-77页(用中文(表达)]。此外,还讨论了一些参数,例如条数,条的相对高度以及影响布拉格反射的条间距。

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