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Lateral flow through the sharp crested side rectangular weirs in open channels

机译:侧向流过锋利的尖顶侧矩形堰在开放通道中

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摘要

A side rectangular weir is a flow diversion structure provided in the side wall of a channel to divert water from main channel to a branch channel. They are widely used in hydraulics, environmental and irrigation engineering for controlling and directing flow of water in irrigation-drainage systems, waste water channels, drainage canal systems, diverting excess water into relief channels for flood-protection works, and as storm overflows from urban sewage systems. The present study is aimed at to compile the past observations on coefficient of discharge for side rectangular sharp crested weir, supplement them with new experimental results and reanalysing resulting data bases with a view towards seeing if better prediction are possible. Therefore, a new model for determination of coefficient of discharge of side rectangular sharp crested weir is developed. It is observed that approach Froude number is an important parameter for coefficient of discharge. The ratio of the crest height of side weir to length of the side weir, ratio of width of the main cannel to length of side weir and ratio of the upstream depth in the channel to length of side weir also affect the coefficient of discharge. The performance of the present model is based on the coefficient of correlation of the linear regression line between predicted values from the present model and desired output (R), mean absolute percentage error (MAPE), average percentage error (APE), root means square error (RMSE) etc. The qualitative performance of the present predictor indicates that it has highest R (0.865) and lowest MAPE (4.8936), RMSE (0.0337), APE (-0.346) as compared to other existing predictors. Flow profile and flow pattern are also observed in the vicinity of side weir in the main channel.
机译:侧矩形堰是设置在通道的侧壁中的流动导流结构,以将水从主通道转移到分支通道。它们广泛应用于液压,环境和灌溉工程,用于控制和引导灌溉排水系统中的水流,废水通道,排水管系统,将过量水转移到防洪工程中的浮雕通道,以及从城市溢出的风暴溢出污水系统。本研究旨在编制关于侧矩形尖峰冠脊型堰的排出系数的过去观察,将它们的新实验结果和重新安置的数据基于,以便看到更好的预测。因此,开发了一种用于确定侧矩形尖峰脊型堰排出系数的新模型。观察到接近Froude号是用于排出系数的重要参数。侧面堰的峰高度与侧堰长度的比率,主插管的宽度与侧堰侧长度的比率和侧堰长度的上游深度的比率也影响了放电系数。本模型的性能基于来自本模型的预测值与所需输出(R)之间的线性回归线的相关系数,平均绝对百分比误差(MAPE),平均百分比误差(APE),根均值方形误差(RMSE)等。本预测器的定性性能表明它具有最高的R(0.865)和最低的MAPE(4.8936),与其他现有预测因子相比,RMSE(0.0337),APE(-0.346)。还在主通道中的侧堰附近观察到流动轮廓和流动模式。

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