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Physical Modelling and Scale Effects of Air-Water Flows on Stepped Spillways

机译:阶梯溢洪道上空气水流的物理模型和尺度效应

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摘要

During the last three decades, the introduction of new construction materials (e.g. RCC (Roller Compacted Concrete), strengthened gabions) has increased the interest for stepped channels and spillways. However stepped chute hydraulics is not simple, because of different flow regimes and importantly because of very-strong interactions between entrained air and turbulence. In this study, new air-water flow measurements were conducted in two large-size stepped chute facilities with two step heights in each facility to study experimental distortion caused by scale effects and the soundness of result extrapolation to prototypes. Experimental data included distributions of air concentration, air-water flow velocity, bubble frequency, bubble chord length and air-water flow turbulence intensity. For a Froude similitude, the results implied that scale effects were observed in both facilities, although the geometric scaling ratio was only Lr=2 in each case. The selection of the criterion for scale effects is a critical issue. For example, major differences (i.e. scale effects) were observed in terms of bubble chord sizes and turbulence levels although little scale effects were seen in terms of void fraction and velocity distributions. Overall the findings emphasize that physical modelling of stepped chutes based upon a Froude similitude is more sensitive to scale effects than classical smooth-invert chute studies, and this is consistent with basic dimensional analysis developed herein.
机译:在过去的三十年中,新型建筑材料(例如RCC(碾压混凝土),加强的石笼网)的引入增加了人们对阶梯状河道和溢洪道的兴趣。但是,由于不同的流动方式,而且重要的是因为夹带的空气和湍流之间的相互作用非常强烈,因此阶梯式滑槽的液压系统并不简单。在这项研究中,新的空气-水流量测量是在两个大型阶梯式溜槽设施中进行的,每个设施中两个台阶高度都用于研究由比例效应引起的实验失真以及将结果外推到原型的可靠性。实验数据包括空气浓度,空气-水流速,气泡频率,气泡弦长和空气-水流湍流强度的分布。对于Froude相似度,结果暗示在两种设备中均观察到了比例效应,尽管在每种情况下几何比例均仅为Lr = 2。选择尺度效应标准是一个关键问题。例如,在气泡弦的大小和湍流水平方面观察到主要差异(即,比例效应),尽管在空隙率和速度分布方面几乎看不到比例效应。总体而言,研究结果强调,基于Froude相似性的阶梯式滑槽的物理建模比经典的平滑倒滑滑槽研究对比例效应更为敏感,这与本文开发的基本尺寸分析是一致的。

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