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Frictional head loss relation between Hazen-Williams and Darcy-Weisbach equations for various water supply pipe materials

机译:各种供水管材料的Hazen-Williams和Darcy-Weisbach方程之间的摩擦头损失关系

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摘要

This research presents the analytical relationship between the frictional head loss obtained by two of the most common equations; Darcy-Weisbach and Hazen-Williams, considering plastic and metallic pipe materials as major categories. A wide range of hydraulic situations have been covered for water supply systems for buildings through five models for each pipe material category, based on water temperatures ranging from 20°C to 60°C, pipe diameters from 15 mm to50 mm and volume flow rates of 0.25 lps to 2 lps. The head loss values obtained by both equations were used to establish the correlation between them by using statistical techniques. The analyses show reliable results with combined correlation coefficient of 0.981 between both equations for plastic and metallic pipes, while the R~(2)value for the trend line of head loss values obtained by these equations was found to be 0.9978. This relationship should prove to be very useful for the water supply pipe manufacturers and designers for the mutual conversion of frictional head loss values obtained by these equations.
机译:该研究介绍了由两个最常见的方程式获得的摩擦头损失之间的分析关系; Darcy-Weisbach和Hazen-Williams,将塑料和金属管材料视为主要类别。对于各种管材类别的五种型号的建筑物供水系统覆盖了各种液压情况,基于水温范围为20°C至60°C,管道直径为15mm至50毫米,体积流量0.25 LPS至2 LPS。通过使用统计技术,使用两个等式获得的头部损耗值来建立它们之间的相关性。分析显示塑料和金属管的两个方程之间的相关系数为0.981的可靠结果,而通过这些方程获得的头部损耗值的趋势线的R〜(2)值为0.9978。这种关系应该对供水管道制造商和设计人员来说非常有用,用于通过这些方程获得的摩擦头部损失值的相互转换。

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