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I The General Problem of Heat Exchange
1 Introduction
1.1 Heat transfer
1.2 Relation of heat transfer to thermodynamics
1.3 Modes of heat transfer
1.4 A look ahead
1.5 Problems
Problems
References
2 Heat conduction concepts, thermal resistance, and the overall
heat transfer coeficient
2.1 The heat diffusion equation
2.2 Solutions of the heat diffusion equation
2.3 Thermal resistance and the electrical analogy
2.4 Overall heat transfer coeficient, U
2.5 Summary
Problems
References
3 Heat exchanger design
3.1 Function and configuration of heat exchangers
3.2 Evaluation of the mean temperature di.erence in a heat
exchanger
3.3 Heat exchanger efectiveness
3.4 Heat exchanger design
Problems
References
II Analysis of Heat Conduction
4 Analysis of heat conduction and some steady one-dimensional
problems
4.1 The well-posed problem
4.2 The general solution
4.3 Dimensional analysis
4.4 An illustration of dimensional analysis in a complex steady
conduction problem
4.5 Fin design
Problems
References
5 Transient and multidimensional heat conduction
5.1 Introduction
5.2 Lumped-capacity solutions
5.3 Transient conduction in a one-dimensional slab
5.4 Temperature-response charts
5.5 One-term solutions
5.6 Transient heat conduction to a semi-infinite region
5.7 Steady multidimensional heat conduction
5.8 Transient multidimensional heat conduction
Problems
References
III Convective Heat Transfer
6 Laminar and turbulent boundary layers
6.1 Some introductory ideas
6.2 Laminar incompressible boundary layer on a flat surface
6.3 The energy equation
6.4 The Prandtl number and the boundary layer thicknesses
6.5 Heat transfer coefficient for laminar, incompressible flow
over a flat surface
6.6 The Reynolds analogy
6.7 Turbulent boundary layers
6.8 Heat transfer in turbulent boundary layers
Problems
References
7 Forced convection in a variety of configurations
7.1 Introduction
7.2 Heat transfer to and from laminar flows in pipes
7.3 Turbulent pipe flow
7.4 Heat transfer surface viewed as a heat exchanger
7.5 Heat transfer coefficients for noncircular ducts
7.6 Heat transfer during cross flow over cylinders
7.7 Other configurations
Problems
References
8 Natural convection in single-phase fluids and during .lm
condensation
8.1 Scope
8.2 The nature of the problems of .lm condensation and of
natural convection
8.3 Laminar natural convection on a vertical isothermal surface
8.4 Natural convection in other situations
8.5 Film condensation
Problems
References
9 Heat transfer in boiling and other phase-change con.gurations
9.1 Nukiyama’s experiment and the pool boiling curve
9.2 Nucleate boiling
9.3 Peak pool boiling heat flux
9.4 Film boiling
9.5 Minimum heat flux
9.6 Transition boiling and system in.uences
9.7 Forced convection boiling in tubes
9.8 Forced convective condensation heat transfer
9.9 Dropwise condensation
9.10 The heat pipe
Problems
References
IV Thermal Radiation Heat Transfer
10 Radiative heat transfer
10.1 The problem of radiative exchange
10.2 Kirchhoff’s law
10.3 Radiant heat exchange between two finite black bodies
10.4 Heat transfer among gray bodies
10.5 Gaseous radiation
10.6 Solar energy
Problems
References
V Mass Transfer
11 An introduction to mass transfer
11.1 Introduction
11.2 Mixture compositions and species fluxes
11.3 Di.usion fluxes and Fick’s law
11.4 Transport properties of mixtures
11.5 The equation of species conservation
11.6 Mass transfer at low rates
11.7 Steady mass transfer with counterdi.usion
11.8 Mass transfer coeficients at high rates of mass transfer
11.9 Simultaneous heat and mass transfer
Problems
References
VI Appendices
A Some thermophysical properties of selected materials
References
B Units and conversion factors
References
C Nomenclature
Citation Index
Subject Index
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