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Characteristics of free and submerged hydraulic jumps in different stilling basins

机译:不同静脉盆地的自由和淹没液压跳跃的特点

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A comprehensive study on free and submerged hydraulic jumps in different stilling basins was carried out. The effects of three adverse slopes, three bed roughnesses and three positive step heights on the hydraulic jump characteristics with a Froude number of 4.56-9.55 and a submergence factor of 0.1-1.5 were investigated. Two semi-theoretical solutions based on the momentum equation were developed to estimate the sequent depth ratio and the submerged depth ratio and the results were compared with experimental data. The results showed that the submerged depth ratio decreased by 22.3% compared with that of the classical jump. The lengths of the free and submerged hydraulic jumps were decreased by 47 and 32.1%, respectively, compared with the length of the classical jump. The maximum errors in the semi-theoretical estimations of the sequent depth ratio and the submerged depth ratio of free and submerged jumps were ±11% and ±16%, respectively. The thickness of the dimensionless boundary layer of the free and submerged jumps was determined to be 0.71 and 0.37, respectively. The average energy loss of the submerged jump in the conditions of this study was 10% more than that of the classical jump.
机译:进行了不同静脉盆地的自由和淹没的液压跳跃的综合研究。研究了三个不利斜坡,三张床粗糙度和三个正台高度对液压跳跃特性的影响,弗劳德数为4.56-9.55和0.1-1.5的淹没因子。开发了基于动量方程的两个半理论溶液,以估计序列深度比和浸没深度比,并将结果与​​实验数据进行比较。结果表明,与经典跳跃相比,浸没的深度比减少了22.3%。与经典跳跃的长度相比,自由和浸没式液压跳跃的长度分别降低了47%和32.1%。 SENENENT DESTHEY比的半理论估计中的最大误差和自由和浸没跳跃的浸没深度比分别为±11%和±16%。自由和浸没跳跃的无量纲边界层的厚度分别测定为0.71和0.37。本研究条件下淹没跳跃的平均能量损失比经典跳跃的速度为10%。

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