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Also, with increasing external Reynolds number, the thermal boundary layer thickness on the tube decreases.
Finally, the dependence of the local concentration boundary layer thickness on Schmidt number is investigated.
This is due to the fact that with increasing external Reynolds numbers, the thermal boundary layer thickness on the tube decreases and consequently the heat transfer rate increases.
Using the concentration polarization model, the liquid boundary layer thickness on the feed side and the intrinsic membrane permeance were calculated for various pervaporation systems.
This is in complete agreement with fundamental principle of convective heat transfer, because with increasing external Reynolds numbers, the thermal boundary layer thickness on the tube decreases and consequently the heat transfer rate increases.
This research work shows the geometry effect and the cold boundary layer thickness on the arc voltage fluctuations, as well as the particle thermal treatment and the resulting coating properties.
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However, the boundary layer thickness of downbursts and impinging jets grows nonlinearly.
The nanofluid viscosity increases with increasing particle volume fraction which results in a reduction of velocity and consequently thicker boundary layer thicknesses on the tube surface.
Thus, the velocity boundary layer thickness for the Casson fluid is larger than the Newtonian fluid.
Increasing the unsteadiness parameter A causes the velocity boundary layer thickness to decrease.
A computational study has been undertaken to examine the effect of boundary layer thickness δ/D on vortex shedding from a square cylinder in proximity to a solid wall.
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