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Constraints for Using Lambert W Function-Based Explicit Colebrook-White Equation

机译:基于Lambert W函数的显式Colebrook-White方程的约束

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We analyze the general applicability of a recent explicit expression of the Colebrook-White equation for turbulent flow friction factor calculation. This explicit expression, which is based on the Lambert W function, is characterized by an exponential term which imposes restrictions on its use. These constraints have been expressed in terms of pipe roughness (ε/D) and the Reynolds number R that are required for friction factor calculation. These constraints were determined as 8.0666 ln(R) + (ε/D)R<721.97 and 8.0666 ln(R) + (ε/D)R<5731.83, respectively, for machines using single precision and double precision computations. Using the Lambert W function, an explicit equation relating R and ε/D was derived at the limiting case which allowed for a graphical representation of the applicability of the explicit form of the Colebrook-White equation in the R versus ε/D space. Before computing friction factors using the explicit Colebrook-White equation, a quick check must be performed to see if the desired combination of R and ε/D values satisfies the applicable constraint mentioned above.
机译:我们分析了Colebrook-White方程的最新显式表达式在湍流摩擦系数计算中的一般适用性。该显式表达式基于Lambert W函数,其特征在于对其施加了限制的指数项。这些约束条件已通过计算摩擦系数所需的管道粗糙度(ε/ D)和雷诺数R表示。对于使用单精度和双精度计算的机器,这些约束条件分别确定为8.0666 ln(R)+(ε/ D)R <721.97和8.0666 ln(R)+(ε/ D)R <5731.83。使用Lambert W函数,在极限情况下导出了一个与R和ε/ D相关的显式方程,该图形允许以图形表示形式表示Colebrook-White方程的显式形式在R对ε/ D空间中的适用性。在使用显式的Colebrook-White方程计算摩擦系数之前,必须进行快速检查,以查看所需的R和ε/ D值组合是否满足上述适用约束。

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