Numerically predicted characteristics of laminar flow and heat transfer thr
ough square duct with twisted tape insert are presented in this paper. The
transport equations are solved on a non-staggered non-orthogonal grid using
the curvilinear version of the "Complete Pressure Correction" algorithm. B
oth the flow and heat transfer are in a state of periodic development in th
e axial direction. The heat transfer characteristics are predicted under ax
ially and peripherally constant wall heat flux conditions. Correlations for
friction factor and Nusselt number are developed from the predicted data.
The agreement between the correlation and experimental data for friction fa
ctor is found to be excellent. Relative thermo-hydraulic performance of squ
are and circular ducts, both fitted with twisted tapes of same twist ratio
is also presented in this paper. The study shows significant improvements c
an be achieved,vith the square duct, particularly at higher Prandtl numbers
and lower twist ratios. Improvement is observed even for air, over certain
ranges of Reynolds number. (C) 2001 Published by Elsevier Science Inc.