Effect of canal width contraction on the hydraulic parameters and scour downstream water structures

Q3 Environmental Science
M. Ashour, Tawab E. Aly, Mahmoud M. Mostafa
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引用次数: 3

Abstract

Abstract The dimensions of many water streams, which satisfy proper hydraulic conditions, may not be compatible with the designed dimensions of an irrigation work that needs to be constructed in some locations. The design requirements of such irrigation works may involve a contraction in the channel width in the required location. This contraction, of course, affects different flow properties and the scour hole formed downstream of these structures. Therefore, the present experimental study aims to investigate the effect of the transition angle and the contraction on the flow properties and on the scour phenomenon downstream water structures. Through 460 experimental runs, carried out on 20 experimental models, the study proved that, for an efficient hydraulic performance and economic design, the best transition angle (θ) for the approaches of water structures is 30° with a relative contracted width ratio (r = b/B) not less than 0.6.
渠道宽度收缩对水力参数和冲刷下游水结构的影响
摘要许多满足适当水力条件的水流的尺寸可能与某些地方需要建造的灌溉工程的设计尺寸不兼容。此类灌溉工程的设计要求可能涉及所需位置的渠道宽度收缩。当然,这种收缩会影响不同的水流特性和这些结构下游形成的冲刷坑。因此,本实验研究旨在研究过渡角和收缩对水流特性和水结构下游冲刷现象的影响。通过在20个试验模型上进行的460次试验运行,研究证明,为了进行有效的水力性能和经济设计,水工建筑物引道的最佳过渡角(θ)为30°,相对收缩宽度比(r=b/b)不小于0.6。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Limnological Review
Limnological Review Environmental Science-Ecology
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
16 weeks
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