Second-law analysis on the heat exchanger having plain fins on a staggered
array of circular tubes was conducted on the basis of correlations of Nusse
lt number and friction factor proposed by Kim et al. (1998), from which the
entropy generation rate was evaluated. Optimum Reynolds number and minimum
entropy generation rate were found over different operating conditions. At
a fixed heat duty, within the valid of range of Kim et al.'s correlation,
the plain fin-and-tube heat exchanger should exhibit a small tube spacing i
n air flow direction, a large number of tube rows, and large fin thickness
and the spacing between adjacent plain fins. There is an optimal ratio betw
een tube spacing normal to air flow direction and the tube diameter.