ABSTRACT

This book provides a thorough understanding of fluid dynamics and heat and mass transfer. The Second Edition contains new chapters on mesh generation and computational modeling of turbulent flow. Combining theory and practice in classic problems and computer code, the text includes numerous worked-out examples. Students will be able to develop computational analysis models for complex problems more efficiently using commercial codes such as ANSYS, STAR CCM+, and COMSOL.

With detailed explanations on how to implement computational methodology into computer code, students will be able to solve complex problems on their own and develop their own customized simulation models, including problems in heat transfer, mass transfer, and fluid flows. These problems are solved and illustrated in step-by-step derivations and figures.

FEATURES

  • Provides unified coverage of computational heat transfer and fluid dynamics
  • Covers basic concepts and then applies computational methods for problem analysis and solution
  • Covers most common higher-order time-approximation schemes
  • Covers most common and advanced linear solvers
  • Contains new chapters on mesh generation and computer modeling of turbulent flow

Computational Fluid Dynamics and Heat Transfer, Second Edition, is valuable to engineering instructors and students taking courses in computational heat transfer and computational fluid dynamics.

part I|138 pages

Basic Equations and Numerical Analysis

chapter 1|47 pages

Review of Basic Laws and Equations

chapter 2|11 pages

Approximations and Errors

chapter 4|26 pages

Numerical Integration

part II|256 pages

Finite Difference – Control Volume Method

chapter 6|46 pages

Finite Difference–Control Volume Method

Multidimensional Problems

chapter 7|56 pages

Finite Difference–Control Volume Method

Unsteady State Diffusion Equation

chapter 8|59 pages

Finite Difference–Control Volume Method

Convection Problems

chapter 10|32 pages

Turbulent Flow Modeling

part III|253 pages

Finite Element Method

chapter 12|41 pages

Element Shape Functions

chapter 13|58 pages

Finite Element Method

One-Dimensional Steady State Problems

chapter 14|50 pages

Finite Element Method

Multidimensional Steady-State Problems

chapter 15|25 pages

Finite Element Method

Unsteady-State Problems

chapter 16|43 pages

Finite Element Method

Convection Problems