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Aeration, flow instabilities, and residual energy on pooled stepped spillways of embankment dams

机译:堤坝阶梯式溢洪道上的曝气,流量不稳定性和剩余能量

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摘要

Air-water flow experiments were conducted on some flat and pooled stepped spillways with slopes of 8.9 degrees and 26.6 degrees in transition and skimming flows. The study comprised the observations of the flow patterns, characteristic air-water flow properties, and energy dissipation performances. The air-water flow properties showed some differences in terms of interfacial velocity, bubble count rate, and turbulence intensity between the stepped chutes for the two channel slopes. These differences were also reflected in the residual energy data, highlighting a better energy dissipation rate for the pooled stepped spillway with slope of 8.9 degrees. However, the aerated flows on the pooled stepped spillways exhibited some hydrodynamic instabilities, and a safe operation must be tested in physical models. The flat stepped spillway appeared to be the preferable design in terms of energy dissipation and flow stability.
机译:空气-水流量实验是在一些平坦的,阶梯状的阶梯溢洪道上进行的,这些溢洪道的过渡和撇油斜率分别为8.9度和26.6度。该研究包括对流动模式,特征性的空气-水流动特性和能量耗散性能的观察。在两个通道坡度的阶梯状斜槽之间,空气-水流特性在界面速度,气泡计数率和湍流强度方面显示出一些差异。这些差异也反映在剩余能量数据中,突出显示了坡度为8.9度的阶梯式溢洪道的更好的能量耗散率。但是,汇集的阶梯式溢洪道上的充气流表现出一些水动力不稳定性,因此必须在物理模型中测试安全操作。就能量耗散和流动稳定性而言,平坦的阶梯式溢洪道似乎是首选的设计。

著录项

  • 作者

    Felder S.; Chanson H.;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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