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首页> 外文期刊>Journal of Hydraulic Engineering >Turbulent Stresses At The Bottom Surface Near An Abutment: Laboratory-scale Numerical Experiment
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Turbulent Stresses At The Bottom Surface Near An Abutment: Laboratory-scale Numerical Experiment

机译:基台附近底面的湍流应力:实验室规模的数值实验

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摘要

The flow field around a bridge abutment is analyzed by means of large eddy simulation. The geometrical configuration corresponds to the initial condition of a scour process (flat bed). The three-dimensional flow structure in front of the abutment is analyzed with special emphasis on its effects on shear stresses and pressure gradients on the bottom wall which, in turn, are discussed with respect to their potential scouring action. Both first- and second-order statistics around the abutment are quantitatively discussed, together with probability density distributions of stresses in specific locations. The investigation shows that several terms may play a relevant role in sediment transport around the obstacle. Specifically, the mean horizontal pressure gradient may reach values as large as two orders of magnitude that of a canonical boundary layer, whereas the instantaneous vertical pressure gradient may give an uplifting force comparable to the immersed weight of the sediment. The analysis suggests that local scour models should incorporate the contribution to the destabilizing force coming from pressure stresses and from turbulent fluctuations.
机译:通过大涡模拟来分析桥台周围的流场。几何构型对应于冲刷过程(平床)的初始条件。分析了基台前部的三维流动结构,并特别强调了其对底壁上的剪应力和压力梯度的影响,然后就其潜在的冲刷作用进行了讨论。定量讨论了基台周围的一阶和二阶统计量以及特定位置应力的概率密度分布。调查表明,几个术语可能在障碍物周围的泥沙输送中发挥重要作用。具体而言,平均水平压力梯度可能会达到标准边界层的两个数量级,而瞬时垂直压力梯度可能会产生与沉入物沉没重量相当的提升力。分析表明,局部冲刷模型应考虑压力压力和湍流波动对失稳力的贡献。

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