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Influence of area ratio on flat oval divided-flow fitting loss coefficients

机译:面积比对扁椭圆分流拟合损失系数的影响

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摘要

A method of correlating branch loss coefficient data as a function of branch-to-common flow rate and area ratios is described. The algebraic expression that was used to successfully collapse the data from a given fitting geometry class onto asingle curve was based on physical reasoning, and cannot be anticipated by conventional scaling arguments. The coefficients of empirical correlations were derived from previously published data and are tabulated for straight-body and conical tees andlaterals. For flat oval fittings at a given flow rate ratio, as the area ratio increased the branch loss coefficient increased. At a given flow rate ratio, straight-body branches typically exhibited higher loss coefficients than conical branches, for thesame flat oval branch-to-common area ratio. Tees consistently displayed higher branch loss coefficients than did laterals for the same flat oval branch/common geometry.
机译:描述了一种将支路损耗系数数据作为支路与公共流量和面积比的函数进行关联的方法。用于将数据从给定的拟合几何类成功折叠到单曲线上的代数表达式是基于物理推理的,并且无法通过常规缩放比例参数进行预测。经验相关系数是从先前发布的数据中得出的,并列出了直体和圆锥形三通和侧边的列表。对于给定流量比的扁平椭圆形配件,随着面积比的增加,支路损耗系数也增加。在给定的流量比下,对于相同的扁平椭圆形分支与公用面积之比,直形分支通常表现出比圆锥形分支更高的损耗系数。对于相同的扁平椭圆形分支/公共几何形状,三通始终显示出比分支更高的分支损耗系数。

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