A 3D Numerical Model of Nearshore Wave-Induced Currents Based on the Discontinuous Galerkin Method

Zhao Zhangyi, Z. Qinghe
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Abstract

Based on the discontinuous Galerkin methods, the concept of three-dimensional radiation stress, surface roller and wave turbulent mixing effects were applied to develop the three-dimensional, unstructured grids numerical model for wave-induced currents. Validation of the model was carried out by comparing the model simulation with laboratory measurements for wave-induced currents over a slope, e.g. Undertow and long shore currents. The model results showed that the agreement between the simulated results and the laboratory measurements is generally good, the proposed model could be used to describe three-dimensional wave induced currents in near shore zone.
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基于不连续伽辽金法的近岸波浪感应流三维数值模型
基于不连续伽辽金方法,引入三维辐射应力、表面滚子和波浪湍流混合效应的概念,建立了波浪感应电流的三维非结构网格数值模型。通过将模型模拟与实验室测量的斜坡上波浪引起的流(如底流和长岸流)进行比较,对模型进行了验证。模型结果表明,模拟结果与实验室测量结果吻合较好,该模型可用于近岸区三维波浪感应流的描述。
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