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Fundamentals of heat exchanger design

By: Contributor(s): Material type: TextTextPublication details: New Delhi; John wiley & sons Inc., 2003.Description: xxxii, 941 p. : ill. ; 24 cmISBN:
  • 978-0471321712
Subject(s): DDC classification:
  • 621.4025 SHA-F
Contents:
1. Classification of Heat Exchangers. 2. Heat Exchanger Design Methodology - An Overview. 3. Basic Thermal Design Theory for Recuperators. 4. Additional Considerations for Thermal Design of Heat Exchangers. 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 Properties. 9. Heat Exchanger Design Procedures. 10. Heat Exchanger Selection. 11. Thermodynamic Analysis for Design and Optimization of Heat Exchangers. 12. Flow-Induced Vibration in Heat Exchangers. 13. Flow Maldistribution and Header Design. 14. Fouling and Corrosion. Appendices. A. Thermophysical Properties of Matter. B. Effectiveness-NTU Relationships for Liquid-Coupled Exchangers. C. Heat Transfer Correlations for Vaporization and Condensation. D. Heat Exchanger Comparative Cost Data.
Summary: 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.
Item type: Books and Monographs
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Books and Monographs Central Library, NIT Jalandhar General Stacks Central Library, NIT Jalandhar 621.4025 SHA-F (Browse shelf(Opens below)) Available 85223

1. Classification of Heat Exchangers.
2. Heat Exchanger Design Methodology - An Overview.
3. Basic Thermal Design Theory for Recuperators.
4. Additional Considerations for Thermal Design of Heat Exchangers.
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 Properties.
9. Heat Exchanger Design Procedures.
10. Heat Exchanger Selection.
11. Thermodynamic Analysis for Design and Optimization of Heat Exchangers.
12. Flow-Induced Vibration in Heat Exchangers.
13. Flow Maldistribution and Header Design.
14. Fouling and Corrosion.
Appendices.
A. Thermophysical Properties of Matter.
B. Effectiveness-NTU Relationships for Liquid-Coupled Exchangers.
C. Heat Transfer Correlations for Vaporization and Condensation.
D. Heat Exchanger Comparative Cost Data.

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.

Dr. Sanjeev, Librarian
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For any query / question, please mail at circulation.liby@nitj.ac.in 

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