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Turbulent Flow Friction Factor Calculation Using a Mathematically Exact Alternative to the Colebrook-White Equation

机译:使用数学上精确的替代Colebrook-White方程的湍流摩擦系数计算

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摘要

We present a novel, mathematically equivalent representation of the Colebrook-White equation to compute friction factor for turbulent flow in rough pipes. This new form is simple, no iterative calculations are necessary, and is well suited for accurate friction factor estimation. A limiting case of this equation provided friction factor estimates with a maximum absolute error of 0.029 and a maximum percentage error of 1% over a 20X500 grid of ε/D and R values (10~(-6)≤ε/D≤5 X 10~(-2); 4X 10~3< R< 10~8). This was more accurate than the best currently available noniterative approximation of the Colebrook-White equation (maximum absolute error of 0.058; maximum percentage error of 1.42%). The superior accuracy, however, was obtained at the expense of a 30% increase in computational effort over the noniterative approximation. The novel equation presented in this study is theoretical and eliminates the need for best fit parameters or complicated initial guesses that are a characteristic of various empirical approximations proposed to date. The simplicity with which this new equation can be solved, coupled with its smooth and predictable error behavior, should make it the method of choice for estimating turbulent flow friction factor in rough pipes.
机译:我们提出了Colebrook-White方程的数学上等价的新颖表示形式,以计算粗管中湍流的摩擦系数。这种新形式很简单,不需要迭代计算,非常适合精确的摩擦系数估算。该方程的一个极限情况提供了在20X500的ε/ D和R值(10〜(-6)≤ε/D≤5X)下的最大绝对误差为0.029且最大百分比误差为1%的摩擦系数估计值10〜(-2); 4X 10〜3

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