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Large scale modelling of oscillatory flows over a rippled bottom

机译:波纹底部的振荡流的大规模建模

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摘要

Large scale models for oscillatory flows over rippled sandy bottoms require new "turbulence" closures and boundary conditions to account for the ripple scale flow. In the present study the large scale flow with the unknown flux terms is estimated by means of a standard RANS model. The simulations do not support the application of the Boussinesq viscosity approximation in wave dominated flows, but other tentative ideas on such type of modelling are confirmed. The characteristic wave wavelength average thickness of the oscillatory boundary layer is estimated as comparable to four times the ripple height. The characteristic wave wavelength average near bottom sediment concentration is estimated to be proportional to the maximum Shields number to the third power. The characteristic wave wavelength near bottom friction is suggested to be proportional to the near bottom current and wave velocity amplitude. The characteristic ripple wavelength average thickness of the oscillatory boundary layer is estimated to be comparable to the characteristic wave wavelength averaged thickness. The characteristic ripple wavelength averaged oscillatory flux terms are estimated to be much larger than the corresponding average turbulent flux terms. The ripple wavelength averaged total flux terms appear to have extrema that are associated both with the flow- and acceleration maxima. (c) 2005 Elsevier Ltd. All rights reserved.
机译:波纹状沙底上的振荡流的大型模型需要新的“湍流”封闭和边界条件,以解决波纹状流的问题。在本研究中,通过标准RANS模型估算了通量项未知的大规模流动。模拟不支持Boussinesq粘度近似在以波浪为主的流动中的应用,但是在这种类型的建模上还证实了其他尝试性想法。振荡边界层的特征波波长平均厚度估计为波纹高度的四倍。估计底部沉积物浓度附近的特征波波长平均值与三次方的最大Shields数成正比。建议底部摩擦附近的特征波波长与底部电流和波速幅度成正比。振荡边界层的特征波纹波长平均厚度被估计为与特征波波长平均厚度相当。估计特征波纹波长平均振荡通量项要比相应的平均湍流项大得多。脉动波长平均总通量项似乎具有与流量最大值和加速度最大值都相关的极值。 (c)2005 Elsevier Ltd.保留所有权利。

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