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A comparative study of rigid-lid and level-set methods for LES of open-channel flows: morphodynamics

机译:刚性盖和水平设定方法对开放通道流量的比较研究:形态学性能

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Computational modeling of open-channel flows is usually carried out using the rigid-lid (RL) assumption to prescribe the water surface. Such an approach deems more appropriate for sub-critical flow regimes with Froude number MUCH LESS-THAN 1. When the Froude number is locally high, e.g. flows around hydraulic structures, the free-surface fluctuations affect the induced hydrodynamics. Indeed, prior investigations on the effect of the RL assumption on large-eddy simulation (LES) of open-channel flows around bridge abutments revealed that such an assumption may influence both the first and second order turbulence statistics. In this work, we investigate the effect of the RL assumption on bed-morphodynamics calculations. The fully coupled flow and bed morphodynamics virtual flow simulator (VFS-Geophysics) model is herein employed to numerically investigate the sediment transport around a laboratory-scale model of abutment. Numerical simulations using a mass-conserving level-set (LS) method and a RL assumption are performed to evaluate the influence of free-surface elevation on the computed bed-morphodynamics at a Reynolds number of 7.9 x 10(4). We also conducted an experimental study to observe the scour development around the abutment model. The instantaneous scour patterns and bed profiles computed with the LS and RL are compared with the measurements. The mean absolute errors of bed-profile predictions at or near quasi-equilibrium of bed evolution, for the LS and RL computed results, are about 4.1% and 4.7%, respectively. Despite the differences in flow field computations of the two methods, the computed bed morphology appeared relatively insensitive to the two numerical approaches. However, the computational cost of the coupled LES-LS-morphodynamics is at least one order of magnitude greater than that of the LES-RL-morphodynamics.
机译:开放通道流的计算建模通常使用刚性盖(RL)假设来规定水面。这种方法认为更适合与FRoude数字的亚临界流动制度更少超过1.当FRoude数在局部高时,例如,在液压结构周围流动,自由表面波动会影响诱导的流体动力学。实际上,关于RL假设对桥梁桥周围的开放通道的大涡流模拟(LES)的影响的事先研究表明,这种假设可能影响第一和二阶湍流统计数据。在这项工作中,我们调查RL假设对床形态学计算的影响。本文使用完全耦合的流动和床形态学性能虚拟流模拟器(VFS-Geophysics)模型,用于数值上调查围绕邻接的实验室规模模型的沉积物传输。使用质量保守水平设定(LS)方法和RL假设的数值模拟,以评估在雷诺数为7.9×10(4)的雷诺数的计算床形态动力学对计算的床形态动力学的影响。我们还进行了一个实验研究,以观察到基台模型周围的冲刷发展。将使用LS和RL计算的瞬时冲刷图案和床型材与测量进行比较。对于LS和RL计算结果,床进化的准平衡或附近的床型预测的平均绝对误差分别为约4.1%和4.7%。尽管两种方法的流场计算差异,但计算的床形态学对两种数值方法相对不敏感。然而,耦合的LES-LS形态动力学的计算成本至少比LES-RL-Morphoymolics的计算成本。

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