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RANS-VOF modeling of hydrodynamics and sand transport under full-scale non-breaking and breaking waves

机译:RANS-VOF模型在全尺度不间断和破波作用下的水动力和砂运

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A 2D RANS-VOF model is used to simulate the flow and sand transport for two different full-scale laboratory experiments: i) non-breaking waves over a horizontal sand bed (Schretlen et al., 2011) and ii) plunging breaking waves over a barred mobile bed profile (Van der Zanden et al., 2016). For the first time, the model is not only tested and validated in terms of water surface and outer flow hydrodynamics, but also in terms of wave boundary layer processes and sediment concentration patterns. It is shown that the model is capable of reproducing the outer flow (mean currents and turbulence patterns) as well as the spatial and temporal development of the wave boundary layer. The simulations of sediment concentration distributions across the breaking zone show the relevance of accounting for turbulence effects on computing suspended sediment pick-up from the bed.
机译:二维RANS-VOF模型用于模拟两个不同的全尺寸实验室实验的流向和沙流传输:i)在水平沙床上的不破裂波(Schretlen et al。,2011)和ii)将破裂波骤降禁止移动的床型材(Van der Zanden等人,2016)。该模型首次不仅在水面和外流流体动力学方面进行了测试和验证,而且还在波浪边界层过程和沉积物浓度模式方面进行了测试和验证。结果表明,该模型能够再现外流(均流和湍流模式)以及波边界层的时空发展。贯穿破碎带的沉积物浓度分布的模拟表明,考虑湍流影响对计算从床中悬浮的沉积物的吸收具有相关性。

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