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Hydrodynamic characteristics and geometric properties of plunging and spilling breakers over impermeable slopes

机译:不可渗透斜坡上突入式和溢出式破碎机的流体动力学特性和几何特性

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The two-phase flow CFD model REEF3D has been used for modeling waves breaking over a sloping seabed for a spilling and a plunging breaker. This model is based on Reynolds-averaged Navier-Stokes (RANS) equations with the level set method (LSM) for the free surface and k-omega model for turbulence. First, the characteristics and geometric properties of plunging breaking waves with different offshore wave steepnesses over slopes are examined and discussed. The study further explores the hydrodynamic characteristics of spilling and plunging breakers in terms of the wave height evolution and attenuation, horizontal and vertical velocity, free surface profile evolution, and the geometric properties during the development of the breaking process. The numerical results show a good agreement with experimental data in terms of free surface elevation, horizontal and vertical velocity, wave envelope and turbulent intensity for the spilling and plunging breakers. Results of numerical simulations describing the physical flow characteristics such as the formation of the forward overturning water jet, air pocket, splash-up, and the secondary wave during the breaking process are presented for both cases. For both cases, the physical flow process is found to have similar flow features, but the breaking process occurs at significantly different scales. (C) 2015 Elsevier Ltd. All rights reserved.
机译:两相流CFD模型REEF3D已用于对在倾斜的海床上破碎的波浪进行建模,以防止溢出和破碎。该模型基于雷诺平均Navier-Stokes(RANS)方程,自由表面采用水平集方法(LSM),湍流采用k-ω模型。首先,研究和讨论了不同坡度上不同海上波浪陡度的突入突波的特性和几何特性。该研究从波浪高度的演变和衰减,水平和垂直速度,自由表面轮廓的演变以及断裂过程发展过程中的几何特性等方面进一步探讨了溢漏式和跌落式破碎器的水动力特性。数值结果表明,在自由表面高度,水平和垂直速度,波浪包络和湍流强度方面,溢漏式和跌落式破碎锤与实验数据吻合良好。两种情况下的数值模拟结果均描述了物理流动特征,例如前倾水射流的形成,气穴,飞溅和次级波。对于这两种情况,都发现物理流动过程具有相似的流动特征,但破坏过程发生的规模明显不同。 (C)2015 Elsevier Ltd.保留所有权利。

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