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Main Author: Grosse-Dunker, Ernst
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2504.03678
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author Grosse-Dunker, Ernst
author_facet Grosse-Dunker, Ernst
contents The Colebrook-White equation is the widely used basis for the calculation of the friction factor lambda for flows in pipes and ducts. Because this equation is implicit in lambda, many solutions have been developed to ease the calculation in order to reduce the effort and to reach a sufficient accuracy. Clamond has proposed in 2008 an iterative solution that requires maximally two iterations to obtain the machine double precision. Here an improvement of this solution is presented, that achieves already with one iteration a maximal error of 2.79E-7, what is more than sufficient for most engineering purposes. This solution is compared in a chart of CPU time versus accuracy with 28 solutions from the literature and in the group of the fastest solutions, that require only two calls of the logarithm function, it proved to be by far the most accurate one.
format Preprint
id arxiv_https___arxiv_org_abs_2504_03678
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Improvement of Clamonds solution of the Colebrook-White equation: highest accuracy for engineering purposes with one iteration
Grosse-Dunker, Ernst
Computational Physics
Numerical Analysis
The Colebrook-White equation is the widely used basis for the calculation of the friction factor lambda for flows in pipes and ducts. Because this equation is implicit in lambda, many solutions have been developed to ease the calculation in order to reduce the effort and to reach a sufficient accuracy. Clamond has proposed in 2008 an iterative solution that requires maximally two iterations to obtain the machine double precision. Here an improvement of this solution is presented, that achieves already with one iteration a maximal error of 2.79E-7, what is more than sufficient for most engineering purposes. This solution is compared in a chart of CPU time versus accuracy with 28 solutions from the literature and in the group of the fastest solutions, that require only two calls of the logarithm function, it proved to be by far the most accurate one.
title Improvement of Clamonds solution of the Colebrook-White equation: highest accuracy for engineering purposes with one iteration
topic Computational Physics
Numerical Analysis
url https://arxiv.org/abs/2504.03678