Contents
Introduction
What and how?
1 .2 Physical Origins and Rate Equations
L.3 The Conservation of Energy Requirement
CHAPTER2
Introduction to Conduction
2.1 The Conduction Rate Equation
2.2 The Thermal Properties of Matter
2.3 The Heat Diffusion Equation
2.4 Boundary and Initial Conditions
2.5 Summary
CHAPTER3
One-Dimensional, Steady-State Conduction
3.1 The Plane Wall
CHAPYER 4
Two-Dimensional, Steady-State Conduction
4.1 Alternative Approaches
CHAPYER 5
Transient Conduction
CHAPYER 6
Introduction to Convection
CHAPYER 7
External Flow
CHAPYER 8
Internal Flow
CHAPTER9
Free Convection
CHAPTER 10
Boiling and Condensation
Forced Convection Boiling
CHAPTER 11
Heat Exchangers
Heat Exchanger Types
CHAPTER 12
Radiation: Processes and Properties
CHAPTER 13
Radiation Exchange Between Surfaces
APPENDIX A
Thermophysical Properties of Matter
APPENDIXD B
Mathematical Relations and Functions
APPENDIXD C
Thermal Conditions Associated with Uniform Energy Generation in One-Dimensional, Steady-State Systems
APPENDIXD D
The Convection Transfer Equations a
APPENDIXD E
Boundary Layer Equations for Turbulent Flow
APPENDIXD F
An Integral Laminar Boundary Layer Solution for Parallei Fiow over a Flat Plate
Index