首页> 外文期刊>Journal of Hydrology >Comment on 'Direct solution for discharge in circular free overfall by Z. Ahmad, H. Md. Azamathulla' J. Hydrol., in press. doi: http://dx.doi.org/10.1016/j.jhydrol.2012.04.025
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Comment on 'Direct solution for discharge in circular free overfall by Z. Ahmad, H. Md. Azamathulla' J. Hydrol., in press. doi: http://dx.doi.org/10.1016/j.jhydrol.2012.04.025

机译:评论“正在解决Z. Ahmad,H. Azamathulla的Z. Ahmad,H. Md。的循环溢流的直接解决方案”,J。Hydrol。,印刷中。 doi:http://dx.doi.org/10.1016/j.jhydrol.2012.04.025

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摘要

Recently, it is proposed [by Ahmad and Azamathulla (2012)] a closed form equation for discharge in terms of end depth in subcritical flows by simulation of the free overfall in a circular channel with a sharp-crested weir. As shown in this discussion, the theoretical discharge relationship can be accurately integrated with the aid of popular mathematical software and series expansion method is not required. According to this study, the theoretical end-depth ratio (EDR) is almost constant with an average value of 0.766 over the entire practical range. Using the numerical results which are accurate to six significant digits, this discussion shows that the proposed power equation by the authors for theoretical discharge in subcritical flow regime is not very accurate (the errors increase up to 12%), thus it is proposed a new accurate equation (with maximum error less than 0.35%) for prediction of theoretical discharge in circular channel with a single measurement of end flow depth.
机译:最近,由[Ahmad and Azamathulla(2012)]提出了一个封闭形式的方程,该方程用于通过模拟具有尖顶堰的圆形通道中的自由倾覆来在亚临界流中根据末端深度排放。如此讨论所示,理论上的排放关系可以借助流行的数学软件精确地整合,并且不需要级数展开法。根据这项研究,理论端深比(EDR)几乎恒定,在整个实用范围内平均值为0.766。使用精确到六位有效数字的数值结果,该讨论表明作者针对亚临界流态中的理论排放量提出的功率方程不是很准确(误差增加到12%),因此提出了一种新的方法。一个精确的方程式(最大误差小于0.35%),用于通过单次测量端部流动深度来预测圆形通道中的理论流量。

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