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COMPARISON OF CHUTE AERATOR EFFECT ON STEPPED AND SMOOTH SPILLWAYS

机译:斜槽空气机效应对阶梯式和平滑溢洪道的比较

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Bottom chute aerators are installed to prevent cavitation damages and they have been studied in detail on smooth spillways. In parallel, stepped spillways became widespread in the past decades. Research has shown that stepped spillways may be endangered even more by cavitation than smooth spillways, particularly for high unit discharges. As a consequence and besides issues of energy dissipation, the unit discharge of stepped spillways is usually limited to lower values than on smooth spillways. In order to overcome that limitation, flow aeration - mainly at the beginning of the chute - is necessary. Until now only fragmentary guidelines exists for the design of such aerators. Systematic tests with bottom chute aerators on stepped spillway are performed on a physical model. A deflector is used to separate the jet from the bottom in order to produce slight negative air pressures. A horizontal slot located in the vertical face of the first step allows for air supply underneath the flow. In addition of the global air entrainment by the aerator, the local air concentrations are spatially measured downstream of the deflector. The resulting air concentration distribution allows the investigation of air transport and detrainment as well as the streamwise average and bottom air concentration. The present paper discusses a test with a typical aerator and compares it with a reference test without aerator and a test on a smooth chute with a similar aerator.
机译:安装底部滑槽曝气器以防止空化损坏,并且它们已经在光滑的溢洪道上详细研究。并行地,阶梯式溢洪道在过去几十年中变得普遍。研究表明,通过光滑的溢洪道,阶梯式溢洪道可能甚至更加危及,特别是对于高单元放电。结果并除了能量耗散问题之外,阶梯式溢洪道的单位排出通常限于较低的值,而不是平滑溢洪道。为了克服这种限制,流动曝气 - 主要在滑槽开始时 - 是必要的。到目前为止,只有零碎的指导方针都存在这种曝气器的设计。在物理模型上进行阶梯溢洪道底部滑槽曝气器的系统测试。偏转器用于将喷射器与底部分开以产生轻微的负空气压力。位于第一步垂直面上的水平槽允许流量下的空气供应。另外,曝气器的全球空气夹带,局部空气浓度在偏转器的下游在空间上测量。所得到的空气浓度分布允许调查空气运输和碎屑以及流平均值和底部空气浓度。本文讨论了用典型的曝气器进行测试,并将其与参考测试进行比较,而没有曝气器,并在具有类似的曝气器的平滑滑槽上进行测试。

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