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- ISBN:9787111342724
- 装帧:暂无
- 册数:暂无
- 重量:暂无
- 开本:16开
- 页数:548
- 出版时间:2023-01-01
- 条形码:9787111342724 ; 978-7-111-34272-4
内容简介
本书是当今*流行的传热学入门教材之一,以简洁明了、容易入门以及包含有大量例题与习题而称著。本书体系完整,内容全面,包含了传热学学习中热传导、热对流、热辐射和换热器等各个重要方面。通过百余道无固定答案的设计作业题目来强化设计训练。本书写作深入浅出,说理、举例简洁易懂,图文并茂,生动活泼,趣味性强,突出了以读者为主的写作思想。
目录
出版说明iv
序v
Guide to Worked Examplesxi
Prefacexv
About the Authorxviii
List of Symbolsxix
CHAPTER 1
Introduction1
11Conduction Heat Transfer1
12Thermal Conductivity5
13Convection Heat Transfer10
14Radiation Heat Transfer12
15Summary13
Review Questions15
Problems15
References19
CHAPTER 2
SteadyState Conduction—
One Dimension 21
21Introduction21
22The Plane Wall21
23Insulation and R Values22
24Radial Systems23
25The Overall HeatTransfer Coefficient27
26Critical Thickness of Insulation33
27HeatSource Systems35
28Cylinder with Heat Sources37
29ConductionConvection Systems39
210Fins42
211Thermal Contact Resistance51
Review Questions54
List of Worked Examples54
Problems55
References69
CHAPTER 3
SteadyState Conduction—Multiple
Dimensions 71
31Introduction71
32Mathematical Analysis of TwoDimensional
Heat Conduction71
33The Conduction Shape Factor76
34Numerical Method of Analysis81
35GaussSeidel Iteration91
36Accuracy Considerations93
37Summary97
Review Questions98
List of Worked Examples98
Problems98
References114
CHAPTER 4
UnsteadyState Conduction117
41Introduction117
42LumpedHeatCapacity System119
43Transient Heat Flow in a SemiInfinite
Solid121
44Convection Boundary Conditions125
45Multidimensional Systems140
46Summary147
Review Questions148
List of Worked Examples148
Problems149
References169
CHAPTER 5
Principles of Convection171
51Introduction171
52Viscous Flow171
53Inviscid Flow174
54Laminar Boundary Layer on a Flat Plate178
55Energy Equation of the Boundary Layer184
56The Thermal Boundary Layer187
57The Relation Between Fluid Friction
and Heat Transfer197
58TurbulentBoundaryLayer Heat Transfer199
59TurbulentBoundaryLayer Thickness206
510Heat Transfer in Laminar Tube Flow209
511Turbulent Flow in a Tube213
512Summary215
Review Questions215
List of Worked Examples217
Problems217
References225
CHAPTER 6
Empirical and Practical Relations for
ForcedConvection Heat Transfer 227
61Introduction227
62Empirical Relations for Pipe and Tube
Flow229
63Flow Across Cylinders and Spheres243
64Flow Across Tube Banks253
65Summary258
Review Questions260
List of Worked Examples260
Problems261
References270
CHAPTER 7
Natural Convection Systems 273
71Introduction273
72FreeConvection Heat Transfer on a
Vertical Flat Plate273
73Empirical Relations for Free Convection278
74Free Convection from Vertical
Planes and Cylinders280
75Free Convection from Horizontal Cylinders286
76Free Convection from Horizontal Plates288
77Free Convection from Inclined Surfaces290
78Nonnewtonian Fluids291
79Simplified Equations for Air291
710Free Convection from Spheres292
711Free Convection in Enclosed Spaces293
712Summary299
713Summary Procedure for all
Convection Problems299
Review Questions300
List of Worked Examples302
Problems302
References312
viiiContentsContentsCHAPTER 8
Radiation Heat Transfer 317
81Introduction317
82Physical Mechanism317
83Radiation Properties319
84Radiation Shape Factor326
85Relations Between Shape Factors336
86Heat Exchange Between Nonblackbodies342
87Infinite Parallel Surfaces349
88Radiation Shields354
89Gas Radiation358
810Radiation Network for an Absorbing
and Transmitting Medium359
811Radiation Exchange with Specular
Surfaces364
812Formulation for Numerical Solution368
813Solar Radiation383
814Radiation Properties of the Environment388
815Effect of Radiation on Temperature
Measurement391
816The Radiation HeatTransfer Coefficient392
817Summary393
Review Questions394
List of Worked Examples394
Problems395
References417
CHAPTER 9
Condensation and Boiling Heat
Transfer 419
91Introduction419
92Condensation HeatTransfer Phenomena419
93The Condensation Number424
94Film Condensation Inside Horizontal Tubes425
95Boiling Heat Transfer428
96Simplified Relations for Boiling
H
序v
Guide to Worked Examplesxi
Prefacexv
About the Authorxviii
List of Symbolsxix
CHAPTER 1
Introduction1
11Conduction Heat Transfer1
12Thermal Conductivity5
13Convection Heat Transfer10
14Radiation Heat Transfer12
15Summary13
Review Questions15
Problems15
References19
CHAPTER 2
SteadyState Conduction—
One Dimension 21
21Introduction21
22The Plane Wall21
23Insulation and R Values22
24Radial Systems23
25The Overall HeatTransfer Coefficient27
26Critical Thickness of Insulation33
27HeatSource Systems35
28Cylinder with Heat Sources37
29ConductionConvection Systems39
210Fins42
211Thermal Contact Resistance51
Review Questions54
List of Worked Examples54
Problems55
References69
CHAPTER 3
SteadyState Conduction—Multiple
Dimensions 71
31Introduction71
32Mathematical Analysis of TwoDimensional
Heat Conduction71
33The Conduction Shape Factor76
34Numerical Method of Analysis81
35GaussSeidel Iteration91
36Accuracy Considerations93
37Summary97
Review Questions98
List of Worked Examples98
Problems98
References114
CHAPTER 4
UnsteadyState Conduction117
41Introduction117
42LumpedHeatCapacity System119
43Transient Heat Flow in a SemiInfinite
Solid121
44Convection Boundary Conditions125
45Multidimensional Systems140
46Summary147
Review Questions148
List of Worked Examples148
Problems149
References169
CHAPTER 5
Principles of Convection171
51Introduction171
52Viscous Flow171
53Inviscid Flow174
54Laminar Boundary Layer on a Flat Plate178
55Energy Equation of the Boundary Layer184
56The Thermal Boundary Layer187
57The Relation Between Fluid Friction
and Heat Transfer197
58TurbulentBoundaryLayer Heat Transfer199
59TurbulentBoundaryLayer Thickness206
510Heat Transfer in Laminar Tube Flow209
511Turbulent Flow in a Tube213
512Summary215
Review Questions215
List of Worked Examples217
Problems217
References225
CHAPTER 6
Empirical and Practical Relations for
ForcedConvection Heat Transfer 227
61Introduction227
62Empirical Relations for Pipe and Tube
Flow229
63Flow Across Cylinders and Spheres243
64Flow Across Tube Banks253
65Summary258
Review Questions260
List of Worked Examples260
Problems261
References270
CHAPTER 7
Natural Convection Systems 273
71Introduction273
72FreeConvection Heat Transfer on a
Vertical Flat Plate273
73Empirical Relations for Free Convection278
74Free Convection from Vertical
Planes and Cylinders280
75Free Convection from Horizontal Cylinders286
76Free Convection from Horizontal Plates288
77Free Convection from Inclined Surfaces290
78Nonnewtonian Fluids291
79Simplified Equations for Air291
710Free Convection from Spheres292
711Free Convection in Enclosed Spaces293
712Summary299
713Summary Procedure for all
Convection Problems299
Review Questions300
List of Worked Examples302
Problems302
References312
viiiContentsContentsCHAPTER 8
Radiation Heat Transfer 317
81Introduction317
82Physical Mechanism317
83Radiation Properties319
84Radiation Shape Factor326
85Relations Between Shape Factors336
86Heat Exchange Between Nonblackbodies342
87Infinite Parallel Surfaces349
88Radiation Shields354
89Gas Radiation358
810Radiation Network for an Absorbing
and Transmitting Medium359
811Radiation Exchange with Specular
Surfaces364
812Formulation for Numerical Solution368
813Solar Radiation383
814Radiation Properties of the Environment388
815Effect of Radiation on Temperature
Measurement391
816The Radiation HeatTransfer Coefficient392
817Summary393
Review Questions394
List of Worked Examples394
Problems395
References417
CHAPTER 9
Condensation and Boiling Heat
Transfer 419
91Introduction419
92Condensation HeatTransfer Phenomena419
93The Condensation Number424
94Film Condensation Inside Horizontal Tubes425
95Boiling Heat Transfer428
96Simplified Relations for Boiling
H
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