Introduction to Thermal and Fluids Engineering

by ;
Edition: 1st
Format: Hardcover
Pub. Date: 2017-02-14
Publisher(s): Wiley
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Summary

This innovative book uses unifying themes so that the boundaries between thermodynamics, heat transfer, and fluid mechanics become transparent. It begins with an introduction to the numerous engineering applications that may require the integration of principles and tools from these disciplines. The authors then present an in-depth examination of the three disciplines, providing readers with the necessary background to solve various engineering problems. The remaining chapters delve into the topics in more detail and rigor. Numerous practical engineering applications are mentioned throughout to illustrate where and when certain equations, concepts, and topics are needed. 

A comprehensive introduction to thermodynamics, fluid mechanics, and heat transfer, this title:

  • Develops governing equations and approaches in sufficient detail, showing how the equations are based on fundamental conservation laws and other basic concepts.
  • Explains the physics of processes and phenomena with language and examples that have been seen and used in everyday life.
  • Integrates the presentation of the three subjects with common notation, examples, and problems.
  • Demonstrates how to solve any problem in a systematic, logical manner.
  • Presents material appropriate for an introductory level course on thermodynamics, heat transfer, and fluid mechanics.

Author Biography

Deborah A. Kaminski is the author of over 80 peer-reviewed articles in technical journals, an invited article in the New York Times, a featured article in Science, with associated podcast, and an engineering textbook published by John Wiley & Sons. After receiving her B.S. degree in Physics, Deborah Kaminski spent 5 years at the General Electric Research and Development Center in Schenectady, New York. Her work focused on heat transfer in electrical machinery, including motors, transformers, batteries, and generators. She then returned to Rensselaer for doctoral research on computational fluid dynamics in free convection. After receiving her Ph.D. in Mechanical Engineering, she joined the Rensselaer faculty in 1985, and was promoted to Associate Professor with tenure in 1991.

Table of Contents

Chapter 1. Introduction to Thermal and Fluids Engineering.

Chapter 2. The First Law.

Chapter 3. Thermal Resistances.

Chapter 4. Fundamentals of Fluid Mechanics.

Chapter 5. Thermodynamic Properties.

Chapter 6. Appications of the Energy Equation to Open Systems.

Chapter 7. Thermodynamic Cycles and the Second Law.

Chapter 8. Refrigeration, Heat Pump, and Power Cycles.

Chapter 9. Internal Flows.

Chapter 10. External Flows.

Chapter 11. Conduction Heat Transfer.

Chapter 12. Convection Heat Transfer.

Chapter 13. Heat Exchangers.

Chapter 14. Radiation Heat Transfer.

Chapter 15. Ideal Gas Mixtures and Combustion (Web).

Appendix A: Tables in SI Units.

Appendix B: Tables in British Units.

Appendix C: Answers to Selected Problems.

Index.

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