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Flow aeration, cavity processes and energy dissipation on flat and pooled stepped spillways for embankments

机译:平坦和池状阶梯式溢洪道上的通气,空腔处理和能量消散

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摘要

The design floods of several reservoirs were recently re-evaluated and the revised spillway outflow could result in dam overtopping with catastrophic consequences for some embankment structures. Herein a physical study was performed on flat and pooled stepped spillways with a slope typical of embankments (theta = 26.6 degrees) and four stepped configurations were tested: a stepped spillway with flat horizontal steps, a pooled stepped spillway, and two stepped spillways with in-line and staggered configurations of flat and pooled steps. The focus of the study was on the flow aeration, air-water flow properties, cavity flow processes, and energy dissipation performances. The results demonstrated the strong aeration of the flow for all configurations. On the in-line and staggered configurations of flat and pooled steps, the flow was highly three-dimensional. The residual head and energy dissipation rates at the stepped chute downstream end were calculated based upon the detailed air-water flow properties. The results showed that the residual energy was the lowest for the flat stepped weir. The data for the stepped spillway configuration with in-line and staggered configurations of flat and pooled steps showed large differences in terms of residual head in the transverse direction. Altogether the present results showed that, on a 26.6 degrees slope stepped chute, the designs with in-line and staggered configurations of flat and pooled steps did not provide any advantageous performances in terms of energy dissipation and flow aeration, but they were affected by three-dimensional patterns leading to some flow concentration.
机译:最近对几座水库的设计洪水进行了重新评估,修订后的溢洪道流出量可能导致大坝超顶,并对某些路堤结构造成灾难性后果。在本文中,对具有斜坡典型堤防(θ= 26.6度)的平坦池状阶梯溢洪道进行了物理研究,并测试了四个阶梯状配置:水平平坦阶梯池的阶梯溢洪道,池状阶梯溢洪道和两个阶梯溢洪道平面和合并台阶的直线和交错配置。研究的重点是流动通气,空气-水流动特性,空腔流动过程和能量耗散性能。结果表明,所有配置的气流均具有强大的通气性。在平面和合并台阶的串联和交错配置中,流是高度三维的。根据详细的空气-水流特性,计算出斜槽下游端的残留压头和能量耗散率。结果表明,平坦台阶堰的剩余能量最低。阶梯式溢洪道构型的数据呈直线形和交错形,呈阶梯形和汇聚阶梯形,在横向方向上的剩余水头方面差异很大。总的来说,目前的结果表明,在坡度为26.6度的阶梯式溜槽上,具有扁平和池形台阶的直列和交错配置的设计在能耗和通气方面没有任何优势,但是受到三个方面的影响。尺寸模式导致一些流量集中。

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