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The friction factor is a crucial parameter in calculating frictional pressure losses.
Nusselt number and friction factor were considered as performance statistics.
Local distributions of Nusselt number and friction factor are presented.
For the friction factor, the discrepancy is 3.01%.
Nusselt number and friction factor were considered as performance parameters.
In Re > 2000, the value of friction factor approaches 0.17.
An exponential equation for the friction factor prediction is given.
Then expressions for calculating the gas wall friction factor, and the gas liquid interface friction factor are presented.
This review covers the synthesis of hybrid nanoparticles, preparation of hybrid nanofluids, thermal properties, heat transfer, friction factor and the available Nusselt number and friction factor correlations.
With the use of the commercial FEM code DEFORM, friction factor calibration curves, i.e. cup height ratio vs. punch stroke, were established for different friction factor values.
The friction factor for the fibers was found to be about a factor of 2 higher than the corresponding friction factor for pipe flow under similar flow conditions.
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