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For assisting flow ((lambda > 0)), local Nusselt number and Sherwood numbers enhance when N increases.
It is due to the fact that viscous forces reduce in the case of assisting flow.
In the case of assisting flow ((lambda > 0)) transverse velocity profile (h eta )) enhances.
For assisting flow, the results agree with the theoretical correlation Sh3 = SHF3 + SHN3.
The resultant correlation for assisting flow is in complete agreement with the results of Ruckenstein and Rajagopalan and Churchill.
For assisting flow regime, temperature drops when either the wall-parallel Lorentz force or buoyancy forces become stronger.
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It is noticed that λ is a constant with (lambda<0) and (lambda>0) corresponding to the opposing and assisting flows, respectively, while (lambda=0 ) is for pure forced convection flow.
By non-dimensionalising the governing equations of flow, two key dimensionless parameters are identified – a ventilation performance indicator, λ, and atrium enhancement parameter, E – which quantify the performance of the ventilation system and the effectiveness of the atrium in assisting flows.
Water assist flow.
The Nusselt number values would be lower for opposed flow than that for assisted flow.
This is due to the presence of the velocity slip factor which tends to assist flow at the boundary.
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