Flow over thin-plate weirs with a triangular notch – influence of the relative width of approach channel with a rectangular cross-section

IF 2.3 4区 环境科学与生态学 Q3 WATER RESOURCES Journal Of Hydrology And Hydromechanics Pub Date : 2024-05-09 DOI:10.2478/johh-2024-0008
Šimon Pospíšilík, Zbyněk Zachoval, Pavel Gabriel
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Abstract

The article deals with the determination of the influence of the relative width of an approach channel with a rectangular cross-section on the discharge of clean water flowing over thin-plated weirs with a triangular notch and zero height of the weir above the bottom of the approach channel. To evaluate the influence, the Kindsvater-Shen equation was modified by introducing the basic effective discharge coefficient and the coefficient of the relative width of the approach channel. The coefficient of the relative width of the approach channel was determined based on the evaluation of data from three extensive experimental research investigations. It is valid for the entire possible range of relative widths of the approach channel and for the range of notch angles from 5.25° to 91.17°. The relative error of discharge determination is approximately up to ±2% over the entire range of discharges used in the conducted experimental research. The evaluation made it possible to determine the boundary distinguishing the partially contracted weirs from the fully contracted weirs in terms of impact on discharge.
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带三角形缺口的薄板堰上的水流--矩形截面引水渠相对宽度的影响
文章论述了矩形截面引水渠相对宽度对清水流经带三角形缺口的薄板堰(堰底以上高度为零)的排量的影响。为了评估这种影响,对金兹瓦特-申方程进行了修改,引入了基本有效排水系数和引水渠相对宽度系数。引水渠相对宽度系数是根据三项广泛的实验研究数据评估确定的。该系数适用于所有可能的引水渠相对宽度范围,以及缺口角从 5.25°到 91.17°的范围。在所进行的实验研究中使用的整个排量范围内,排量测定的相对误差约为±2%。通过评估,可以确定部分收缩堰与完全收缩堰对排量影响的分界线。
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来源期刊
CiteScore
4.20
自引率
5.30%
发文量
30
审稿时长
>12 weeks
期刊介绍: JOURNAL OF HYDROLOGY AND HYDROMECHANICS is an international open access journal for the basic disciplines of water sciences. The scope of hydrology is limited to biohydrology, catchment hydrology and vadose zone hydrology, primarily of temperate zone. The hydromechanics covers theoretical, experimental and computational hydraulics and fluid mechanics in various fields, two- and multiphase flows, including non-Newtonian flow, and new frontiers in hydraulics. The journal is published quarterly in English. The types of contribution include: research and review articles, short communications and technical notes. The articles have been thoroughly peer reviewed by international specialists and promoted to researchers working in the same field.
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