Experimental study on discharge coefficient of a gear-shaped weir

被引:0
作者
Jing Zhang [1 ]
Qian Chang [2 ]
Qing-hua Zhang [1 ]
Shu-ning Li [1 ]
机构
[1] College of Water Conservancy and Civil Engineering, Shandong Agricultural University
[2] River Management Bureau, Huaihe River Commission of the Ministry of Water Resources
基金
中国国家自然科学基金;
关键词
Experimental study; Discharge coefficient; Discharge capacity; Gear-shaped weir; Geometrical parameter;
D O I
暂无
中图分类号
TV131.6 [水工试验];
学科分类号
0801 ; 080103 ; 080104 ; 081502 ;
摘要
This study focused on hydraulic characteristics around a gear-shaped weir in a straight channel. Systematic experiments were carried out for weirs with two different gear heights and eight groups of geometrical parameters. The impacts of various geometrical parameters of gear-shaped weirs on the discharge capacity were investigated. The following conclusions are drawn from the experimental study:(1) The discharge coefficient(mc) was influenced by the size of the gear: at a constant discharge, the weir with larger values of a/b(a is the width of the gear, and b is the width between the two neighboring gears) and a/c(c is the height of the gear) had a smaller value of mc. The discharge capacity of the gear-shaped weir was influenced by the water depth in the weir.(2) For type C1 with a gear height of 0.01 m, when the discharge was less than 60m3/h and H1=P < 1.0(H1is the water depth at the low weir crest, and P is the weir height), mcsignificantly increased with the discharge and H1=P; with further increases of the discharge and H1=P, mcshowed insignificant decreases and fluctuated within small ranges. For type C2 with a gear height of 0.02 m, when the discharge was less than 60m3/h and H1=P < 1.0, mcsignificantly increased with the discharge and H1=P; when the discharge was larger than 60m3/h and H1=P > 1.0, mcslowly decreased with the increases of the discharge and H1=P for a=b 1.0 and a=c 1.0, and slowly increased with the discharge and H1=P for a=b > 1.0 and a=c > 1.0.(3) A formula of mcfor gear-shaped weirs was established based on the principle of weir flow, with consideration of the water depth in the weir, the weir height and width, and the height of the gear.
引用
收藏
页码:258 / 264
页数:7
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