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Approximate analytical methodology for calculating friction factors in flow through polygonal cross section ducts

机译:计算流经多边形横截面管道的流动摩擦系数的近似分析方法

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摘要

An approximate analytical methodology for calculating the friction factor within ducts of irregular cross-section is herein proposed. The approximations are developed by transforming the original governing PDEs into simpler ODEs, using approximation rules provided by the coupled integral equations approach. The transformed system is directly integrated and analytical solutions for the friction factor are readily obtained. Four different approximation cases are analyzed, which yield simple closed-form expressions for calculating the friction factor in terms of geometric parameters for rectangular, triangular, and trapezoidal ducts. The results of these expressions are compared with literature data, and very reasonable agreement is seen. After performing an error analysis of the results, regions for applicability of the methodology where accuracy requirements can be maintained are highlighted. Finally, enhanced approximation formulas yielding maximum errors as low as 3 are developed by using simple weighted averages of different approximation cases.
机译:本文提出了一种近似的计算不规则截面管道内摩擦系数的分析方法。通过使用耦合积分方程方法提供的近似规则,将原始控制偏微分方程转换为更简单的常微分方程来开发近似值。改造后的系统直接集成,很容易获得摩擦系数的解析解。分析了四种不同的近似情况,得出了简单的闭合形式表达式,用于根据矩形、三角形和梯形管道的几何参数计算摩擦系数。将这些表达式的结果与文献数据进行比较,可以看出非常合理的一致性。在对结果进行误差分析后,将突出显示可以保持精度要求的方法的适用性区域。最后,通过使用不同近似情况的简单加权平均值,开发了产生最大误差低至3%的增强近似公式。

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