
Compact Heat Exchangers
Selection, Design and Operation
Butterworth-Heinemann (Publisher)
2nd Edition
Published on 22. September 2016
Book
Paperback/Softback
502 pages
978-0-08-100305-3 (ISBN)
Description
Compact Heat Exchangers: Selection, Design, and Operation, Second Edition, is fully revised to present the most recent and fundamental ideas and industrial concepts in compact heat exchanger technology. This complete reference compiles all aspects of theory, design rules, operational issues, and the most recent developments and technological advancements in compact heat exchangers.
New to this edition is the inclusion of micro, sintered, and porous passage description and data, electronic cooling, and an introduction to convective heat transfer fundamentals. New revised content provides up-to-date coverage of industrially available exchangers, recent fouling theories, and reactor types, with summaries of off-design performance and system effects and installations issues in, for example, automobiles and aircraft.
Hesselgreaves covers previously neglected approaches, such as the Second Law (of Thermodynamics), pioneered by Bejan and co-workers. The justification for this is that there is increasing interest in life-cycle and sustainable approaches to industrial activity as a whole, often involving exergy (Second Law) analysis. Heat exchangers, being fundamental components of energy and process systems, are both savers and spenders of energy, according to interpretation.
New to this edition is the inclusion of micro, sintered, and porous passage description and data, electronic cooling, and an introduction to convective heat transfer fundamentals. New revised content provides up-to-date coverage of industrially available exchangers, recent fouling theories, and reactor types, with summaries of off-design performance and system effects and installations issues in, for example, automobiles and aircraft.
Hesselgreaves covers previously neglected approaches, such as the Second Law (of Thermodynamics), pioneered by Bejan and co-workers. The justification for this is that there is increasing interest in life-cycle and sustainable approaches to industrial activity as a whole, often involving exergy (Second Law) analysis. Heat exchangers, being fundamental components of energy and process systems, are both savers and spenders of energy, according to interpretation.
Reviews / Votes
"This book provides a very comprehensive introduction about compact heat exchangers (CPHE) from the underpinning theory to the technology development." --Dr. Jennifer Wen, Professor of Engineering, The University of Warwick, UKMore details
Edition
2nd edition
Language
English
Place of publication
Oxford
United Kingdom
Publishing group
Elsevier Science & Technology
Target group
Professional and scholarly
practicing and research engineers in user, contractor and manufacturing sectors of industry. Researchers and graduate students in academia
Dimensions
Height: 229 mm
Width: 152 mm
Weight
550 gr
ISBN-13
978-0-08-100305-3 (9780081003053)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

J. E. Hesselgreaves | Richard Law | David Reay
Compact Heat Exchangers
Selection, Design and Operation
E-Book
09/2016
2nd Edition
Butterworth-Heinemann
€115.00
Available for download
Previous edition

Book
05/2001
Pergamon
€211.50
Article exhausted; check for reprint
Persons
John Hesselgreaves is an independent consultant in advanced heat exchanger products, and has 2 patents in the field. He has held positions as Lecturer and Honourary Research Fellow at Heriot- Watt University, UK Richard Law is a Research Associate in the School of Chemical Engineering and Advanced Materials at Newcastle University, UK. His main research areas are heat transfer enhancement, heat exchanger design, heat pumps, power cycles and industrial waste heat recovery. Professor Reay manages David Reay & Associates, UK, and he is a Visiting Professor at Northumbria University, Emeritus Professor at Newcastle University, and Honorary Professor Brunel University London, UK. His main research interests are compact heat exchangers, process intensification, and heat pumps. He is also Editor-in-Chief of Thermal Science and Engineering Progress and Associate Editor of the International Journal of Thermofluids, both are published by Elsevier. Prof. Reay is the Author/Co-author of eight other books.
Author
Department of Mechanical and Chemical Engineering, Heriot-Watt University, Edinburgh, UK
School of Chemical Engineering and Advanced Materials, Newcastle Univeristy, UK
Manager, David Reay and Associates; Visiting Professor, Northumbria University; Researcher, Newcastle University; Honorary Professor at Nottingham University, UK
Content
1. Introduction
2. Industrial Compact Exchangers
3. The Heat Exchanger as Part of a System: Exergetic (Second Law) Analysis
4. Surface Comparisons, Size, Shape and Weight Relationships
5. Aspects of Flow and Convective Heat Transfer Fundamentals for Compact Surfaces
6. Surface Types and Correlations
7. Thermal Design
8. Compact Heat Exchangers in Practice
2. Industrial Compact Exchangers
3. The Heat Exchanger as Part of a System: Exergetic (Second Law) Analysis
4. Surface Comparisons, Size, Shape and Weight Relationships
5. Aspects of Flow and Convective Heat Transfer Fundamentals for Compact Surfaces
6. Surface Types and Correlations
7. Thermal Design
8. Compact Heat Exchangers in Practice