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A novel explicit equation for friction factor in smooth and rough pipes

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Akademik Birimler

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Avcı, Atakan
Karagöz, İrfan

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ASME

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In this paper, we propose a novel explicit equation for friction factor, which is valid for both smooth and rough wall turbulent flows in pipes and channels. The form of the proposed equation is based on a new logarithmic velocity profile and the model constants are obtained by using the experimental data available in the literature. The proposed equation gives the friction factor explicitly as a function of Reynolds number and relative roughness. The results indicate that the present model gives a very good prediction of the friction factor and can reproduce the Colebrook equation and its Moody plot. Therefore, the new approximation for the friction factor provides a rational, accurate, and practically useful method over the entire range of the Moody chart in terms of Reynolds number and relative roughness.

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Boundary layer turbulence, Channel flow, Friction, Pipe flow, Rough surfaces, Turbulent pipe, Channel flows, Wall, Engineering, Boundary layers, Computer simulation, Pipe, Reynolds number, Tribology, Turbulent flow, Colebrook equation, Experimental data, Explicit equations, Friction factors, In-pipe, Mathematical modeling, Model constants, Moody chart, Velocity profiles

Alıntı

Avcı, A. ve Karagöz, İ. (2009). "A novel explicit equation for friction factor in smooth and rough pipes". Journal of Fluids Engineering - Transactions of the ASME, 131(6).

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