The first and second laws of thermodynamics have been utilized to optimize the convective heat transfer in a packed duct with constant wail temperatures. Introducing packing into the fluid-flow passage increases the wall-to-fluid heat transfer considerably and hence reduces entropy generation due to heat transfer across: a finite temperature difference; at the same time, entropy generation due to fluid-flow friction increases. Minimization of the net entropy generation yields the criterion for system optimization. It is shown that the entropy-generation rate, a path-dependent property induced by enhancement of convective heat transfer in a packed duct, may be minimized through proper selection of operating conditions and design parameters of the system.
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UNIV BUENOS AIRES,FAC CIENCIAS EXACTAS & NAT,DEPT IND,PINMATE,RA-1428 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC CIENCIAS EXACTAS & NAT,DEPT IND,PINMATE,RA-1428 BUENOS AIRES,ARGENTINA
LEMCOFF, NO
DUARTE, SIP
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UNIV BUENOS AIRES,FAC CIENCIAS EXACTAS & NAT,DEPT IND,PINMATE,RA-1428 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC CIENCIAS EXACTAS & NAT,DEPT IND,PINMATE,RA-1428 BUENOS AIRES,ARGENTINA
DUARTE, SIP
MARTINEZ, OM
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UNIV BUENOS AIRES,FAC CIENCIAS EXACTAS & NAT,DEPT IND,PINMATE,RA-1428 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,FAC CIENCIAS EXACTAS & NAT,DEPT IND,PINMATE,RA-1428 BUENOS AIRES,ARGENTINA