Fundamentals of Momentum, Heat and Mass Transfer

Voorkant
Wiley Global Education, 9 jan 2014 - 768 pagina's
Fundamentals of Momentum, Heat and Mass Transfer, 6th Edition provides a unified treatment of momentum transfer (fluid mechanics), heat transfer and mass transfer. The new edition has been updated to include more modern examples, problems, and illustrations with real world applications. The treatment of the three areas of transport phenomena is done sequentially. The subjects of momentum, heat, and mass transfer are introduced, in that order, and appropriate analysis tools are developed.
 

Inhoudsopgave

1 Introduction to Momentum Transfer
1
2 Fluid Statics
16
3 Description of a Fluid in Motion
29
ControlVolume Approach
34
ControlVolume Approach
44
ControlVolume Approach
65
7 Shear Stress in Laminar Flow
85
8 Analysis of a Differential Fluid Element in Laminar Flow
99
19 Convective Heat Transfer
301
20 Convective HeatTransfer Correlations
324
21 Boiling and Condensation
352
22 HeatTransfer Equipment
365
23 Radiation Heat Transfer
390
24 Fundamentals of Mass Transfer
431
25 Differential Equations of Mass Transfer
467
26 SteadyState Molecular Diffusion
489

9 Differential Equations of Fluid Flow
107
10 Inviscid Fluid Flow
124
11 Dimensional Analysis and Similitude
141
12 Viscous Flow
154
13 Flow in Closed Conduits
186
14 Fluid Machinery
204
15 Fundamentals of Heat Transfer
220
16 Differential Equations of Heat Transfer
236
17 SteadyState Conduction
247
18 UnsteadyState Conduction
277
27 UnsteadyState Molecular Diffusion
533
28 Convective Mass Transfer
556
29 Convective Mass Transfer Between Phases
592
30 Convective MassTransfer Correlations
617
31 MassTransfer Equipment
655
Nomenclature
693
APPENDIXES
700
Index
754
Copyright

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Over de auteur (2014)

James R. Welty arrived at Oregon State University as a freshman in mechanical engineering in 1950 and has been associated with OSU ever since. He earned his B.S. in 1954, and began teaching at OSU in 1958, receiving his Ph.D. in 1962 and becoming a full professor in 1967. He served as head of the Department of Mechanical Engineering from 1970 to 1985, at which time he returned to full-time teaching until his retirement in 1996.

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