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Experimental and Theoretical Study of Local Scour around Three-Pier Group

机译:三墩组局部冲刷的实验与理论研究

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摘要

The prediction of bridge-pier scour has been mostly aimed for a single pier of various sizes, shapes, and alignments with flow. For the case of multiple piers, widely used manuals still recommend using single-pier scour formulas with an equivalent diameter, regardless of pier separation and angle of attack. In this paper, we present the results of a new set of laboratory experiments conducted to address the local scour around a group of three piers with different sizes, spacing, and attacking angles. Based on the phenomenological theory of turbulence, we also formulate a semitheoretical framework for calculating the maximum scour depth in the multipier condition, including the single-pier counterpart as a special case. The few coefficients in the final equation were determined by experimental data from this and other studies. Our results provide an understanding of the eddies responsible for the scour process, and show that pier diameter, pier spacing, actual pier width, flow depth, Froude number, and sediment size are all important variables that need to be considered in order to obtain an accurate prediction of the maximum scour depth. Therefore, these results shed new light on current engineering procedures based on using single-pier expressions in the case of multiple piers.
机译:桥墩冲刷的预测主要是针对各种尺寸,形状和与流动对准的单个码头。对于多个码头的情况,广泛使用的手册仍然建议使用具有等效直径的单码头冲压公式,无论码头分离和攻角。在本文中,我们展示了一系列新的实验室实验结果,以解决局部冲刷,以不同尺寸,间隔和攻击角度的三个码头。基于湍流的现象学理论,我们还制定了一个关于计算多层条件下的最大冲刷深度的半运动框架,包括单墩对应物作为特殊情况。最终方程中的少数系数由来自该研究和其他研究的实验数据确定。我们的结果对负责冲洗过程的漩涡提供了理解,并显示码头直径,码头间距,实际码头宽度,流量深度,FRoude号和沉积物大小都是需要考虑的重要变量,以便获得精确预测最大冲刷深度。因此,这些结果在多个码头的情况下基于使用单墩表示的当前工程程序阐述了新的光。

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