Year: 2003 Language: english Author: Ramesh K. Shah, Dušan P. Sekulic Genre: Manual Publisher: Wiley ISBN: 0-471-32171-0 Format: PDF Quality: eBook Pages count: 972 Description: The importance of heat exchangers is immense. They are used in the process, power, transportation, air-conditioning and refrigeration, cryogenic, heat recovery, alternate fuels, and manufacturing industries, as well as being key components of many industrial products available in the marketplace. The aim of this book is to merge the knowledge necessary for those who study and those who apply in practice, designing specific solutions, implementing them, maintaining them or controlling their processes. It focuses on two-fluid, single-phase heat exchangers for steady-state operation.
Contents
Preface Nomenclature 1 Classification of Heat Exchangers 2 Overview of Heat Exchanger Design Methodology 3 Basic Thermal Design Theory for Recuperators 4 Additional Considerations for Thermal Design of Recuperators 5 Thermal Design Theory for Regenerators 6 Heat Exchanger Pressure Drop Analysis 7 Surface Basic Heat Transfer and Flow Friction Characteristics 8 Heat Exchanger Surface Geometrical Characteristics 9 Heat Exchanger Design Procedures 10 Selection of Heat Exchangers and Their Components 11 Thermodynamic Modeling and Analysis 12 Flow Maldistribution and Header Design 13 Fouling and Corrosion Appendix A: Thermophysical Properties Appendix B: "-NTU Relationships for Liquid-Coupled Exchangers Appendix C: Two-Phase Heat Transfer and Pressure Drop Correlations C.1 Two-Phase Pressure Drop Correlations C.2 Heat Transfer Correlations for Condensation C.3 Heat Transfer Correlations for Boiling Appendix D: U and CUA Values for Various Heat Exchangers General References on or Related to Heat Exchangers Index
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Fundamentals of Heat Exchanger Design
Year: 2003
Language: english
Author: Ramesh K. Shah, Dušan P. Sekulic
Genre: Manual
Publisher: Wiley
ISBN: 0-471-32171-0
Format: PDF
Quality: eBook
Pages count: 972
Description: The importance of heat exchangers is immense. They are used in the process, power, transportation, air-conditioning and refrigeration, cryogenic, heat recovery, alternate fuels, and manufacturing industries, as well as being key components of many industrial products available in the marketplace. The aim of this book is to merge the knowledge necessary for those who study and those who apply in practice, designing specific solutions, implementing them, maintaining them or controlling their processes. It focuses on two-fluid, single-phase heat exchangers for steady-state operation.
Contents
PrefaceNomenclature
1 Classification of Heat Exchangers
2 Overview of Heat Exchanger Design Methodology
3 Basic Thermal Design Theory for Recuperators
4 Additional Considerations for Thermal Design of Recuperators
5 Thermal Design Theory for Regenerators
6 Heat Exchanger Pressure Drop Analysis
7 Surface Basic Heat Transfer and Flow Friction Characteristics
8 Heat Exchanger Surface Geometrical Characteristics
9 Heat Exchanger Design Procedures
10 Selection of Heat Exchangers and Their Components
11 Thermodynamic Modeling and Analysis
12 Flow Maldistribution and Header Design
13 Fouling and Corrosion
Appendix A: Thermophysical Properties
Appendix B: "-NTU Relationships for Liquid-Coupled Exchangers
Appendix C: Two-Phase Heat Transfer and Pressure Drop Correlations
C.1 Two-Phase Pressure Drop Correlations
C.2 Heat Transfer Correlations for Condensation
C.3 Heat Transfer Correlations for Boiling
Appendix D: U and CUA Values for Various Heat Exchangers
General References on or Related to Heat Exchangers
Index
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