Issue Section:
Technical Briefs
1.
Aceves-Saborio
S.
Ranasinghe
J.
Reistad
G. M.
1989
, “An Extension to the Irreversibility Minimization Analysis Applied to Heat Exchangers
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 111
, pp. 29
–36
.2.
Bejan, A, 1982, Entropy Generation Through Heat and Fluid Flow, Wiley, New York, pp. 119–134.
3.
Bejan
A.
1987
, “The Thermodynamic Design of Heat and Mass Transfer Processes and Devices
,” Int. J. Heat Fluid Flow
, Vol. 8
, pp. 258
–276
.4.
Bergles, A. E., Blumenkrantz, A. R., and Taborek, J., 1974, “Performance Evaluation Criteria for Selection of Enhanced Heat Transfer Surfaces,” Proc. V. Int. Heat Transfer Conf, Tokyo, Vol. II, pp. 239–243.
5.
Cowell
T. A.
1990
, “A General Method for the Comparison of Compact Heat Transfer Surfaces
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 112
, pp. 288
–294
.6.
Cowell, T. A., Heikal, M. R., and Achaichia, A., 1993, “Flow and Heat Transfer in Compact Louvred Fin Surfaces,” in: Aerospace Heat Exchanger Technology, R. K. Shah and A. Hashemi, eds., Elsevier Science Publ., Amsterdam, pp. 549–560.
7.
Gaggioli, R. A., and El-Sayed, Y. M., 1987, “A Critical Review of Second Law Costing Methods,” Proc. IV Int. Syrup. on 2nd Law Analysis of Thermal Systems, M. J. Moran and E. Sciubba, eds., ASME, New York, pp. 59–73.
8.
Kays, W. M., and London, A. L., 1984, Compact Heat Exchangers, 3d ed., McGraw-Hill, New York.
9.
London
A. L.
1982
, “Economics and the Second Law: an Engineering View and Methodology
,” Int. J. Heat Mass Transfer
, Vol. 25
, pp. 743
–751
.10.
Paotetti, S., Rispoli, F., and Sciubba, E., 1989, “Calculation of Exergetic Losses in Compact Heat Exchanger Passages,” ASME AES-Vol. 10, No. 2, pp. 21–29.
11.
Schenone
C.
Tagliafico
L.
Tanda
G.
1991
, “Second Law Performance Analysis for Offset Strip-Fin Heat Exchangers
,” Heat Transfer Engineering
, Vol. 12
, pp. 19
–27
.12.
Sekulic
D. P.
1990
, “The Second Law Quality of Energy Transformation in a Heat Exchanger
,” ASME JOURNAL OF HEAT TRANSFER
, Vol. 112
, pp. 295
–300
.13.
Shah, R. K., 1978, “Compact Heat Exchanger Surface Selection Methods,” Proc. VI Int. Heat Transfer Conf., Toronto, Vol. 4, pp. 193–199.
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