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首页> 外文期刊>Journal of Hydraulic Engineering >Hydraulic Models of the Flow Distribution in a Four Branch Open Channel Junction with Supercritical Flow
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Hydraulic Models of the Flow Distribution in a Four Branch Open Channel Junction with Supercritical Flow

机译:超临界流四分支明渠交汇处水流模型

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摘要

Intense rainfall on urban areas can generate severe flooding in the city, and if the conditions are right, the flow in the streets can be supercritical. The redistribution of the flow in street intersections determines the flow rates and water levels in the street network. We have investigated the flow that occurs when two supercritical flows collide in a 90° junction formed by streets of identical cross section. Several flow configurations within the intersection are possible, depending on the position of the hydraulic jumps that form in and upstream of the intersection. Previous work has identified three flow types, with Type II flows being further classified into three subregimes. Hydraulic models have been developed, based on the principles of the conservation of flow and momentum flux in the intersection, which predict the angles at which the jumps will form. These models can be used to determine the flow type that will occur. Moreover, additional models have been developed for computing the outflow discharge distribution. For Type I flows, it has not been possible to develop such a hydraulic model for the discharge distribution, but some data are provided for one configuration to indicate the influence of different parameters. For Type II and Type III flows, such models are developed, and their predictions agree with data obtained from the channel intersection facility at the Laboratory of Fluid Mechanics and Acoustics in Lyon.
机译:城市地区的强降雨会在城市中引发严重的洪灾,如果条件合适,街道上的水流可能会超临界。街道交叉口的流量重新分配决定了街道网络中的流量和水位。我们研究了当两个超临界流在具有相同横截面的街道形成的90°交汇处碰撞时发生的流。取决于交叉口内和上游形成的水力跃迁的位置,交叉口内的几种流量配置都是可能的。先前的工作已确定了三种流类型,其中第二类流进一步分为三个子领域。根据交叉路口的流量和动量通量守恒原理,开发了水力模型,该模型预测了跳跃将形成的角度。这些模型可用于确定将要发生的流类型。此外,还开发了用于计算流出流量分布的其他模型。对于I型流量,不可能为排放分布开发这样的水力模型,但是为一种配置提供了一些数据以指示不同参数的影响。对于II型和III型流量,开发了这种模型,其预测结果与从里昂流体力学和声学实验室的通道交叉点设施获得的数据相符。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2011年第3期|p.289-299|共11页
  • 作者单位

    Laboratoire de Mecanique des Fluides et d'Acoustique, Universite de Lyon, CNRS, Ecole Centrale de Lyon, INSA de Lyon, Universite Claude Bernard Lyon I, 20 Av. A. Einstein, 69621 Villeurbanne, France Cemagref Hydrology-Hydraulics Research Unit, 3 bis, quai Chauveau, CP 220, 69336 Lyon Cedex 09, France;

    Laboratoire de Mecanique des Fluides et d'Acoustique, Universite de Lyon, CNRS, Ecole Centrale de Lyon, INSA de Lyon, Universite Claude Bernard Lyon I, 20 Av. A. Einstein, 69621 Villeurbanne, France;

    Cemagref, HHLY Hydrology-Hydraulics Research Unit, 3 Bis, Quai Chauveau, CP 220, 69336 Lyon Cedex 09, France;

    Laboratoire de Mecanique des Fluides et d'Acoustique, Universite de Lyon, CNRS, Ecole Centrale de Lyon, INSA de Lyon, Universite Claude Bernard Lyon I, 36 av. Guy de Collongue, 69134 Ecully Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    junction; supercritical flow; hydraulic model; experimental;

    机译:交界处超临界流水力模型实验性的;

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