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008 090103s1999 ne |b 001 0 eng
020 _a0792356373 (alk. paper)
039 9 _a201402040119
_bVLOAD
_c201010090810
_dmalmash
_c200901030916
_dNoora
_c200901030916
_dNoora
_y200901030914
_zNoora
050 0 0 _aTJ263
_b.H425 1999
245 0 0 _aHeat transfer enhancement of heat exchangers /
_cedited by S. KakaƧ ... [et al.].
260 _aDordrecht ;
_aBoston :
_bKluwer Academic Publishers,
_c1999.
300 _ax, 676 p. :
_bill. ;
_c25 cm.
504 _aIncludes bibliographical references and index.
505 _aPreface. Introduction to Heat Transfer Enhancement - Preview of Contributions; S. Kakac. The Imperative to Enhance Heat Transfer; A.E. Bergles. Sustainability Criteria for Heat Exchanger Design; N.H. Afgan, M.G. Calvalho. Extended Surface Heat Transfer in Heat Exchangers and Performance Measurements; P.J. Heggs. Microfin Tube Technology - The Effects of Spiral Angle on Evaporative Heat Transfer Enhancement; S.-Y. Oh, A.E. Bergles. Heat Transfer Enhancement by Wing-Type Longitudinal Vortex Generators and their Application to Finned Oval Tube Heat Exchanger Elements; M. Fiebig, Y. Chen. Effect of Fin Heat Conduction on the Performance of Punched Winglets in Finned Oval Tubes; Y. Chen, M. Fiebig. Heat Transfer and Fluid Flow in Rib-Roughened Rectangular Ducts; B. Sunden. On the Airside Performance of Fin-and-Tube Heat Exchangers; C.-C. Wang. Optimum Design of Air-Cooled Fin-and-Tube Heat Exchangers: Accounting for the Effect of Complex Circuiting; C.-C. Wang. Flow and Heat Transfer Mechanisms in Plate-and-Frame Heat Exchangers; B. Sunden. Heat Transfer Enhancement in a Plate Heat Exchanger with Rib-Roughened Surfaces; R. Tauscher, F. Mayinger. Heat Transfer Augmentation in Channels with Porous Copper Inserts; T.M. Kuzay, J.T. Collins. Boiling on Structured Surfaces; R.L. Webb, L.-H. Chien. Heat Exchangers for Thermoacoustic Refrigerators: Heat Transfer Measurements in Oscillatory Flow; C. Herman, M. Wetzel. A Study on the High Performance Ceramic Heat Exchanger for Ultra High Temperatures; M. Kumada. Boiling and Evaporation of Falling Film on Horizontal Tubes and its Enhancement on Grooved Tubes; Y. Fujita. Numerical and Experimental Investigation of Enhancement of Turbulent Flow Heat Transfer in Tubes by Means of Truncated Hollow Cone Inserts; T. Ayhan, et al. Modern Advances in Optical Measuring Techniques -- Tools to Support Energy Conservation; F. Mayinger. Enhancement of Combined Heat and Mass Transfer in Rotary Exchangers; U. Dingl
520 _aHeat transfer enhancement in single-phase and two-phase flow heat exchangers in important in such industrial applications as power generating plant, process and chemical industry, heating, ventilation, air conditioning and refrigeration systems, and the cooling of electronic equipment. Energy savings are of primary importance in the design of such systems, leading to more efficient, environmentally friendly devices. This book provides invaluable information for such purposes.
650 0 _aHeat exchangers.
_954202
650 0 _aHeat
_xTransmission.
_91589
942 _2lcc
_n0
_cBK
999 _c26219
_d26219