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LATTICE BOLTZMANN NUMERICAL SIMULATIONS OF WAVECURRENT INTERACTION WITHIN THE BOUNDARY LAYER

机译:晶格Boltzmann在边界层内的浪潮交互的数值模拟

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In this work, numerical simulations of the oscillatory boundary layer induced by an oscillatory-ripple-covered bed in a fluid otherwise at rest and in the presence of superimposed weak currents are presented. The simulations are performed using a rather new promising numerical technique named the Lattice Boltzmann Method and a brief description of the method is given. The dynamics of coherent structures in the boundary layer are presented. The results show a cycling repetition of jet of vortices from the boundary. Their interaction lead to a momentum transportation at a distance from the boundary that decreases for increasing value of the tested superimposed currents. For the lowest values of the superimposed currents, time-averaged velocity fields as well as time-space-averaged velocity profiles show the formation of a streak of fluid, close to the ripple crest level where the velocity is against the current.
机译:在这项工作中,呈现了在休息速度和叠加弱电流的流体中振荡波覆盖床引起的振荡边界层的数值模拟。使用命名为晶格Boltzmann方法的相当新的有前途的数值技术进行模拟,并给出了对方法的简要描述。提出了边界层中相干结构的动态。结果显示了从边界的涡流射流的循环重复。它们的相互作用导致距离边界的距离导致动量运输,这减小了对测试的叠加电流的值的增加。对于叠加电流的最低值,时间平均速度场以及时间空间平均速度分布显示了流体条纹的形成,接近旋转峰值水平,其中速度抵抗电流。

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