PERHAPS A GIFT VOUCHER FOR MUM?: MOTHER'S DAY

Close Notification

Your cart does not contain any items

$231

Hardback

Not in-store but you can order this
How long will it take?

QTY:

English
CRC Press
05 February 2020
Heat exchangers are essential in a wide range of engineering applications, including power plants, automobiles, airplanes, process and chemical industries, and heating, air-conditioning, and refrigeration systems. Revised and fully updated with new problem sets, Heat Exchangers: Selection, Rating, and Thermal Design, Fourth Edition presents a systematic treatment of heat exchangers, focusing on selection, thermal-hydraulic design, and rating.

Topics discussed include

Classification of heat exchangers

Basic design methods of heat exchangers for sizing and rating problems

Single-phase forced convection correlations for heat exchangers

Pressure drop and pumping power for heat exchangers and piping circuits

Design methods of heat exchangers subject to fouling

Thermal design methods and processes for double-pipe, shell-and-tube, gasketed-plate, compact, and polymer heat exchangers

Two-phase convection correlations for heat exchangers

Thermal design of condensers and evaporators

Micro/nanoheat transfer

The Fourth Edition contains updated information about microscale heat exchangers and the enhancement heat transfer for applications to heat exchanger design and experiment with nanofluids. The Fourth Edition is designed for courses/modules in process heat transfer, thermal systems design, and heat exchanger technology. This text includes full coverage of all widely used heat exchanger types.

By:   , , , , , , ,
Imprint:   CRC Press
Country of Publication:   United Kingdom
Edition:   4th edition
Dimensions:   Height: 254mm,  Width: 178mm, 
Weight:   1.165kg
ISBN:   9781138601864
ISBN 10:   1138601861
Pages:   528
Publication Date:  
Audience:   College/higher education ,  General/trade ,  Primary ,  ELT Advanced
Format:   Hardback
Publisher's Status:   Active
1. Classification of Heat Exchangers 2. Basic Design Methods of Heat Exchangers 3. Forced Convection Correlations for the Single-Phase Side of Heat Exchangers 4. Heat Exchanger Pressure Drop and Pumping Power 5. Micro/Nano Heat Transfer 6. Fouling of Heat Exchangers 7. Double-Pipe Heat Exchangers 8. Design Correlations for Condensers and Evaporators 9. Shell-and-Tube Heat Exchangers 10. Compact Heat Exchangers 11. Gasketed-Plate Heat Exchangers 12. Condensers and Evaporators 13. Polymer Heat Exchangers

Sadik Kakaç is a distinguished scientist and educator, and currently is a professor of mechanical engineering at TOBB University of Economics and Technology in Ankara, Turkey, and an Emeritus Professor at the University of Miami (Florida). Dr. Kakaç earned master’s degrees in mechanical engineering and nuclear engineering at the Massachusetts Institute of Technology, and a Ph.D. from the Victoria University of Manchester. In 2013 he was made an Honorary Member of ASME. Dr. Kakac is the author of numerous successful books in the areas of heat transfer and thermal engineering. Hongtan Liu (PhD, University of Miami) is professor of Mechanical Engineering, and the director of the Dorgan Solar Energy and Fuel Cell Laboratory, at the University of Miami, Florida. He is also an Adjunct Professor at the Beijing Jiao Tong University, China. Dr. Liu's research interests include PEM Fuel Cells, Direct Methanol Fuel Cells, Solar Energy, Hydrogen Energy, Storage Energy, and Clean Energy. Anchasa Pramuanjaroenkij, Ph.D., is an Associate Professor of Engineering at Kasetsart University, Thailand. She has also served as Acting Assistant to the President for Public Relations and Organizational Communication, Chalermphrakiat Sakon Nakhon Province Campus.

See Also