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LATTICE BOLTZMANN NUMERICAL SIMULATIONS OF WAVECURRENT INTERACTION WITHIN THE BOUNDARY LAYER

机译:边界层内水力相互作用的格子Boltzmann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,提出了由振荡波纹覆盖的床在流体中诱导的振荡边界层的数值模拟,否则流体处于静止状态并且存在叠加的弱电流。使用名为Lattice Boltzmann方法的相当新的有前途的数值技术进行了仿真,并对该方法进行了简要说明。给出了边界层中相干结构的动力学。结果显示了从边界开始的漩涡射流的循环重复。它们的相互作用导致在离边界一定距离处的动量传输,该动量传输随着测试的叠加电流值的增加而减小。对于最低的叠加电流值,时间平均速度场以及时空平均速度曲线显示了流体条纹的形成,接近速度逆着电流的波纹波峰水平。

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