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Full Description
Comprehensive and unique source integrates the material usually distributed among a half a dozen sources.
* Presents a unified approach to modeling of new designs and develops the skills for complex engineering analysis.
* Provides industrial insight to the applications of the basic theory developed.
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: ?(Epsilon)-NTU Relationships for Liquid-Coupled Exchangers.
Appendix C: Two-Phase Heat Transfer and Pressure Drop Correlations.
Appendix D: U and C_UA Values for Various Heat Exchangers.
General References on or Related to Heat Exchangers.
Index.