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A 3D wave model to simulate the interaction of wave field in the presence of multi-structures

机译:3D波浪模型,用于模拟多结构存在时的波场相互作用

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A 3D dispersive numerical model has been developed and utilized to study the interacted wave field in the Offshore Engineering Basin (OEB) of National Research Council Canada in the presence of array of structures. The basic physics of the numerical model follows the concept of the depth averaged velocity distribution along with an enhanced dispersion relation. The Alternating Direction Implicit (ADI) algorithm has been employed for the solution of the governing equations. As an application, the model has been used to study the wave propagation in the presence of different combinations of structures where the effects due to the reflection and diffraction are also incorporated. Relevant experiments are carried out in the OEB. Total 10 wave probes are deployed to measure the data at different locations in the Basin. Later the numerical results are compared with the experimental results in the OEB at different probe locations for different wave and structure conditions. The comparisons of the numerical results show great agreement with the experimental results. In this paper the results for regular waves will only be presented and discussed.
机译:已经开发了3D色散数值模型,并利用它来研究存在结构阵列的加拿大国家研究委员会海洋工程盆地(OEB)中的相互作用波场。数值模型的基本物理原理遵循深度平均速度分布以及增强的色散关系的概念。交替方向隐式(ADI)算法已用于求解控制方程。作为一种应用,该模型已用于研究在结构不同组合存在下的波传播,其中还结合了反射和衍射带来的影响。相关实验在OEB中进行。总共部署了10个波探头,以测量盆地中不同位置的数据。随后,将数值结果与在OEB中针对不同波和结构条件在不同探头位置处的实验结果进行比较。数值结果的比较表明与实验结果非常吻合。在本文中,将仅介绍和讨论规则波的结果。

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