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Numerical Simulation of Bragg Reflection Based on Linear Waves Propagation over A Series of Rectangular Seabed

机译:基于线性波在一系列矩形海底上繁殖的基于线性波的数值模拟

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A numerical model, Evolution Equation of Mild-Slope Equation (EEMSE) developed by Hsu et al. (2003), was applied to study the Bragg reflection of water waves over a series of rectangular seabed. Three key parameters of the Bragg reflection including the peak coefficient of primary Bragg reflection, its corresponding relative wavelength, and the bandwidth, have shown to be effective in describing the characteristics of the primary Bragg reflection. The characteristics of the Bragg reflection were investigated under the various conditions comprising number, height, and spacing interval of a series of rectangular seabed. The results reveal that the peak of Bragg reflection increases with the increase of rectangular seabed height and number, the bandwidth and the shift value of the Bragg reflection depend on the increase of the rectangular seabed height as well as the decrease of rectangular seabed number, and the relative rectangular seabed spacing in the rang of 3 and 4 could produce higher Bragg reflection. Finally, a correlative and regressive analysis is performed by use of the calculated data. Based on the results of the analysis, empirical equations were established. Our study results can provide an appropriate choice of a series of rectangular seabed field for a practical design.
机译:HSU等人开发的温和斜率方程(EEMSE)的数值模型,演化方程。 (2003),应用于研究水波在一系列矩形海床上的布拉格反射。包括初级布拉格反射的峰值反射的三个关键参数,其相应的相对波长和带宽显示,已经有效地描述了主布拉格反射的特性。在包括一系列矩形海底的数量,高度和间隔间隔的各种条件下研究了布拉格反射的特征。结果表明,布拉格反射的峰值随着矩形海底高度和数量的增加而增加,布拉格反射的带宽和换档值取决于矩形海底高度的增加以及矩形海底数量的减小,以及在3和4中的相对矩形海床间距可以产生更高的布拉格反射。最后,通过使用计算的数据执行相关性和回归分析。基于分析结果,建立了经验方程。我们的研究结果可以为实际设计提供适当的一系列矩形海底领域。

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