Handbook for Transversely Finned Tube Heat Exchanger Design
Autor Eugene Pis’mennyi, Georgiy Polupan, Ignacio Carvajal-Mariscal, Florencio Sanchez-Silva, Igor Pioroen Limba Engleză Paperback – 8 mai 2016
Based on extensive experimental studies and tested at leading design and research institutions, this handbook provides an extensive set of materials for calculating and designing convective surfaces from transversely finned tubes, with a particular emphasis on power plant applications.
- Provides a design manual for calculating heat transfer and aerodynamic resistance of convective heating surfaces fabricated in the form of tube bundles with transverse circular, square and helical fins
- Presents calculations for finned surfaces operating under conditions of clean and dust-laden flows alike, including finned convective heating surfaces of boilers
- Includes a fully solved exercise at the end of the book, illustrating the top-down approach specially oriented to power plant heat exchangers
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Specificații
ISBN-13: 9780128043974
ISBN-10: 0128043970
Pagini: 188
Dimensiuni: 152 x 229 x 23 mm
Greutate: 0.34 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128043970
Pagini: 188
Dimensiuni: 152 x 229 x 23 mm
Greutate: 0.34 kg
Editura: ELSEVIER SCIENCE
Public țintă
design engineers, researchers, and students of power engineering and power machine construction specialtiesCuprins
1 GENERAL STATEMENTS
2 HEAT TRANSFER CALCULATION
2.1 Basic Equations
2.2 Overall Heat Transfer Coefficient
2.3 Reduced Heat Transfer Coefficient
2.4 Convective Heat Transfer Coefficient
2.5 Coefficient of Heat Transfer from the Wall to the Internal Medium
2.6 Contamination Factor and Thermal Efficiency
2.7 Average Temperature Difference
3 CALCULATION OF AERODYNAMIC RESISTANCE
4 CALCULATION OF HYDRAULIC RESISTANCE
5 CALCULATION OF TEMPERATURE MODE OF FINNED TUBES
6 STRENGTH DESIGN
7 EXAMPLES OF CALCULATIONS
2 HEAT TRANSFER CALCULATION
2.1 Basic Equations
2.2 Overall Heat Transfer Coefficient
2.3 Reduced Heat Transfer Coefficient
2.4 Convective Heat Transfer Coefficient
2.5 Coefficient of Heat Transfer from the Wall to the Internal Medium
2.6 Contamination Factor and Thermal Efficiency
2.7 Average Temperature Difference
3 CALCULATION OF AERODYNAMIC RESISTANCE
4 CALCULATION OF HYDRAULIC RESISTANCE
5 CALCULATION OF TEMPERATURE MODE OF FINNED TUBES
6 STRENGTH DESIGN
7 EXAMPLES OF CALCULATIONS