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Spillway discharges by modification of weir shapes and overflow surroundings

机译:通过改变堰形状和溢流环境来溢洪道排放

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Almost all spillways of mid-size dams in Korea are overflow weir. To investigate the flood control capacity of overflow spillway, 3D numerical simulations were analyzed the discharge of a dam spillway for different weir shapes. Hydraulic model experiments, downsized as scale factor of 40 to 1 by Froude similitude were also carried out to verify the numerical results. Overflow phases and discharges of the linear labyrinth weir and the curved labyrinth weir were compared with those of the linear ogee weir. It was found that the discharge of the labyrinth weir was 71 % greater than that of the linear ogee weir at low reservoir elevation because the labyrinth weir had a longer effective length. However, as the elevation of the water surface rose, the discharge slope of the labyrinth weir became milder by submergence and nappe interference in the side channel. Structural modification of the overflow surroundings such as changing the approaching channel elevation, lowering the bed elevation of the side channel, and moving the weir structure toward the reservoir were also considered to examine the discharge capacity of the spillway. Lowering the bed elevation of the side channel was found to be the most effective option.
机译:韩国几乎所有的中型水坝溢洪道都是溢流堰。为了研究溢洪道的防洪能力,对不同溢流堰形状的大坝溢洪道流量进行了3D数值模拟分析。还进行了水力模型实验,并通过Froude模拟将其比例尺缩小为40:1,以验证数值结果。比较了线性迷宫堰和弯曲迷宫堰的溢流阶段和溢流与线性ogee堰的溢流阶段和溢流。发现在低水库高度时,迷宫堰的排放量比线性泥石堰的排放量大71%,因为迷宫堰的有效长度更长。但是,随着水面高度的升高,迷宫堰的排放坡度由于侧通道中的浸没和推挤作用而变得较缓和。为了检查溢洪道的排放能力,还考虑了对溢流环境的结构修改,例如改变接近通道的高度,降低侧通道的床层高度以及将堰结构移向储层。降低侧通道的床高是最有效的选择。

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