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Comparison of downstream scour of single and combined free-fall jets in co-axial and non-axial modes

机译:同轴和非轴向模式下单自由落体射流和组合自由落体射流下游冲刷的比较

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摘要

Downstream plunge pools of dams have been exposed to erosion caused by falling jets of the hydraulic structure's outlets. This damages the foundation and body of the dam and its constituent structures. Therefore, investigating the scouring phenomenon of plunge pools is one of the important issues in hydraulic engineering. The present research investigates the characteristics of scour holes by single jets and combined jets in different operational modes of dam spillway and outlet. Using experimental modeling, 36 experiments were conducted with various discharges and two tail water depths in single and combined jet modes. The results show that combined jet has lower scour depth and hill height than single jets in all conditions. Comparing the depth and length of the hole and hill height caused by scouring reveals that combined jet is approximately between 5 and 10 greater for a co-axial than for non-axial combined jets in all tail water conditions. But the width of the scour hole of the non-axial combined jets is more than the co-axial one. With the aid of dimensional analysis, an equation is proposed for calculating the scouring characteristics of the combined jets, which is a good determination coefficient between calculated and observational data. Also, the dimensionless results show that the length of the scour hole and the length of mound are about one and a half times the position where the maximum scour depth is formed. Thus, a unit non-dimensional curve can be obtained for the longitudinal profile of scour. The results of the study indicate that, given the case of combining jets as non-axial, the depth and length of the scour holes are lower than the single mode, and that downstream scour can be controlled and reduced relative to the co-axial state by combining the non-axial spillway outlet jet with the orifice jet.
机译:大坝的下游跳水池暴露在水工结构出口下落的射流造成的侵蚀之下。这破坏了大坝的基础和主体及其组成结构。因此,研究跳水池的冲刷现象是水利工程中的重要问题之一。本研究考察了大坝溢洪道和出水口不同运行模式下单射流和组合射流冲刷孔的特征。利用实验模型,在单射流和组合射流模式下,在各种排放和两个尾水深度下进行了36次实验。结果表明,在所有条件下,组合射流的冲刷深度和坡高均低于单射流。比较冲刷引起的孔的深度和长度以及山高可以发现,在所有尾水条件下,同轴组合射流的组合射流比非轴向组合射流高出约5%至10%。但是非轴向组合射流的冲刷孔宽度大于同轴射流。借助量纲分析,提出了计算组合射流冲刷特性的方程,是计算数据与实测数据之间较好的确定系数。此外,无量纲结果表明,冲刷孔的长度和土丘的长度约为形成最大冲刷深度位置的1.5倍。因此,可以得到冲刷纵向剖面的单位无量纲曲线。研究结果表明,在非轴向射流组合的情况下,冲刷孔的深度和长度均低于单一模式,非轴向溢洪道出流与孔流相结合,可以控制和减少下游冲刷相对于同轴状态。

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