The calibration of sharp-crested weirs with a horizontal edge used for measuring flows in partially full pipes

Q2 Social Sciences
J. Kubrak, E. Kubrak, Joanne E. Binio
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引用次数: 0

Abstract

This paper presents the results of a laboratory study on the discharge capacity of sharp-crested weirs fitted with a horizontal edge in pipes during open-channel flow conditions and clean water used to measure the outflow. Such sharp-crested weirs are mounted in pipes and are used to control the inflow to separators. The stream profile does not correspond to the profile given by Bazin for sharp crested weirs in channels. A desired location of the water level measurement point for flow rate calculations was provided. Discharge curves were identified for three sharp-crested weirs of 0.0465, 0.0634 and 0.0771 m in height, installed in the pipe of 0.1534 m in diameter and inclinations of 0.5 and 1.0%. The discharge curves for weir flow with free nappe does not show a significant effect of the pipe slope on the weir discharge capacity. The non-dimensional formulas for the discharge capacity of the sharp-crested weir were found as general polynomial regressions. The results indicate that the calibrated sharp-crested weir with a horizontal edge placed in a pipe can be used to control the flow. Due to the scale effect, relationships obtained from the calibration cannot be generalised to other pipe diameters and weirs heights than those analysed.
校准用于测量部分满水管道流量的带水平边缘的尖顶堰
本文介绍了在明渠水流条件下,对管道中装有水平边缘的尖顶堰的排放能力进行实验室研究的结果,并用清水测量了流出量。这种尖顶堰安装在管道中,用于控制分离器的流入量。水流剖面与巴津给出的渠道尖顶堰剖面不一致。提供了用于流量计算的水位测量点的理想位置。在直径为 0.1534 米、倾斜度为 0.5%和 1.0%的管道中分别安装了高度为 0.0465 米、0.0634 米和 0.0771 米的三座尖顶堰,并确定了其泄流曲线。自由堰塞体堰流的排泄曲线显示,管道坡度对堰塞体排泄能力的影响并不明显。尖顶堰排泄能力的非尺寸公式是一般多项式回归。结果表明,在管道中设置水平边缘的校准尖顶堰可用来控制水流。由于尺度效应,校准得到的关系不能推广到比所分析的管道直径和堰高更大的其他管道。
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
Journal of Water and Land Development
Journal of Water and Land Development Social Sciences-Development
CiteScore
2.10
自引率
0.00%
发文量
0
审稿时长
14 weeks
期刊介绍: Journal of Water and Land Development - is a peer reviewed research journal published in English. Journal has been published continually since 1998. From 2013, the journal is published quarterly in the spring, summer, autumn, and winter. In 2011 and 2012 the journal was published twice a year, and between 1998 and 2010 it was published as a yearbook. . Papers may report the results of experiments, theoretical analyses, design of machines and mechanization systems, processes or processing methods, new materials, new measurements methods or new ideas in information technology. Topics: engineering and development of the agricultural environment, water managment in rural areas and protection of water resources, natural and economic functions of grassland.
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