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Convective Heat Transfer Solved Problems Michel Favremarinet

  • SKU: BELL-4302492
Convective Heat Transfer Solved Problems Michel Favremarinet
$ 31.00 $ 45.00 (-31%)

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Convective Heat Transfer Solved Problems Michel Favremarinet instant download after payment.

Publisher: Wiley-ISTE
File Extension: PDF
File size: 4.89 MB
Pages: 381
Author: Michel Favre?Marinet, Sedat Tardu(auth.)
ISBN: 9780470611890, 9781848211193, 0470611898, 1848211198
Language: English
Year: 2009

Product desciption

Convective Heat Transfer Solved Problems Michel Favremarinet by Michel Favre?marinet, Sedat Tardu(auth.) 9780470611890, 9781848211193, 0470611898, 1848211198 instant download after payment.

Each chapter begins with a brief yet complete presentation of the related topic. This is followed by a series of solved problems. The latter are scrupulously detailed and complete the synthetic presentation given at the beginning of each chapter. There are about 50 solved problems, which are mostly original with gradual degree of complexity including those related to recent findings in convective heat transfer phenomena. Each problem is associated with clear indications to help the reader to handle independently the solution. The book contains nine chapters including laminar external and internal flows, convective heat transfer in laminar wake flows, natural convection in confined and no-confined laminar flows, turbulent internal flows, turbulent boundary layers, and free shear flows.Content:
Chapter 1 Fundamental Equations, Dimensionless Numbers (pages 1–29):
Chapter 2 Laminar Fully Developed Forced Convection in Ducts (pages 31–51):
Chapter 3 Forced Convection in Boundary Layer Flows (pages 53–118):
Chapter 4 Forced Convection Around Obstacles (pages 119–139):
Chapter 5 External Natural Convection (pages 141–193):
Chapter 6 Internal Natural Convection (pages 195–210):
Chapter 7 Turbulent Convection in Internal Wall Flows (pages 211–279):
Chapter 8 Turbulent Convection in External Wall Flows (pages 281–322):
Chapter 9 Turbulent Convection in Free Shear Flows (pages 323–361):

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