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2-D numerical analysis of near-field flow at low-crested permeable breakwaters

机译:低层渗透性防波堤近场水流二维数值分析

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This paper describes the capability of a numerical model named COrnell BReaking waves And Structures (COBRAS) [Lin, P., Liu, P.L.-F., 1998. A numerical study of breaking waves in the surf zone. Journal of Fluid Mechanics 359, 239-264; Liu, P.L.-F., Lin, P., Chang, K.A., Sakakiyama, T., 1999. Numerical modeling of wave interaction with porous structures. Journal of Waterway, Port, Coastal and Ocean Engineering 125, 322-330, Liu, P.L.-F., Lin, P., Hsu, T., Chang, K., Losada, I.J., Vidal, C., Sakakiyama, T., 2000. A Reynolds averaged Navier-Stokes equation model for nonlinear water wave and structure interactions. Proc. Coastal Structures '99, 169-174] based on the Reynolds Averaged Navier-Stokes (RANS) equations to simulate the most relevant hydrodynarmc near-field processes that take place in the interaction between waves and low-crested breakwaters. The model considers wave reflection, transmission, overtopping and breaking due to transient nonlinear waves including turbulence in the fluid domain and in the permeable regions for any kind of geometry and number of layers. Small-scale laboratory tests were conducted in order to validate the model, with different wave conditions and breakwater configurations. In the present study, regular waves of different heights and periods impinging on a wide-crested structure are considered. Three different water depths were tested in order to examine the influence of the structure freeboard. The experimental set-up includes a flow recirculation system aimed at preventing water piling-up at the lee of the breakwater due to overtopping. The applicability and validity of the model are examined by comparing the results of the numerical computations with experimental data. The model is proved to simulate with a high degree of agreement all the studied magnitudes, free surface displacement, pressure inside the porous structure and velocity field. The results obtained show that this model represents a substantial improvement in the numerical modelling of low-crested structures (LCS) since it includes many processes neglected previously by existing models. The information provided by the model can be useful to analyse structure functionality, structure stability, scour and many other hydrodynamic processes of interest.
机译:本文描述了名为COrnell断裂波和结构(COBRAS)的数值模型的能力[Lin,P.,Liu,P.L.-F.,1998。对海浪区中的破碎波的数值研究。流体力学杂志359,239-264; Liu,P.L.-F.,Lin,P.,Chang,K.A.,Sakakiyama,T.,1999。与多孔结构的波相互作用的数值模拟。水路,港口,海岸与海洋工程学报125,322-330,刘,PL-F。,Lin,P.,Hsu,T.,Chang,K.,Losada,IJ,Vidal,C.,Sakakiyama,T ,2000年。一个用于非线性水波和结构相互作用的雷诺平均Navier-Stokes方程模型。程序基于Reynolds平均Navier-Stokes(RANS)方程的Coastal Structures '99,169-174],以模拟在波浪和低顶防波堤之间的相互作用中发生的最相关的水动力近场过程。该模型考虑了瞬态非线性波(包括流体域和可渗透区域中的湍流)对任何几何形状和层数的波动所引起的波反射,透射,越过和破裂。为了验证模型,在不同的波浪条件和防波堤配置下进行了小型实验室测试。在本研究中,考虑了撞击到高顶结构上的不同高度和周期的规则波。为了检验干舷结构的影响,对三种不同的水深进行了测试。实验装置包括一个流动再循环系统,目的是防止水由于过顶而堆积在防波堤的背风处。通过将数值计算结果与实验数据进行比较,检验了模型的适用性和有效性。该模型被证明可以高度一致地模拟所有研究的量值,自由表面位移,多孔结构内部的压力和速度场。获得的结果表明,该模型代表了低矮结构(LCS)数值模型的实质性改进,因为它包括许多现有模型先前所忽略的过程。该模型提供的信息可用于分析结构功能,结构稳定性,冲刷和其他许多感兴趣的水动力过程。

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