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Jamil Ghojel
Fundamentals of Heat Engines
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Страница 1
Table of Contents
List of Tables
List of Illustrations
Guide
Pages
Wiley-ASME Press Series
Fundamentals of Heat Engines
Copyright
Series Preface
Preface
Страница 12
About the Companion Website
Part I
Fundamentals of Engineering Science Introduction I: Role of Engineering Science
1 Review of Basic Principles 1.1 Engineering Mechanics
1.1.1 Definitions
1.1.2 Newton's Laws of Motion
1.1.3 Rectilinear Work and Energy
1.1.4 Circular Motion
1.1.4.1 Uniform Circular Motion of a Particle
1.1.5 Rotating Rigid‐Body Kinetics
1.1.6 Moment, Couple, and Torque
1.1.7 Accelerated and Decelerated Shafts
1.1.8 Angular Momentum (Moment of Momentum)
1.1.9 Rotational Work, Power, and Kinetic Energy
1.2 Fluid Mechanics
1.2.1 Fluid Properties 1.2.1.1 Mass and Weight
1.2.1.2 Pressure
1.2.1.3 Compressibility
1.2.1.4 Viscosity
1.2.2 Fluid Flow
1.2.2.1 General Energy Equation
1.2.3 Acoustic Velocity (Speed of Sound)
1.2.4 Similitude and Dimensional Analysis
1.2.4.1 Dimensional Analysis
1.2.4.2 Buckingham Pi (π) Theorem
1.3 Thermodynamics
1.3.1 Work and Heat as Different Forms of Energy
1.3.2 Mixture of Gases
Example 1.1
Solution
1.3.2.1 Dalton Model of Gas Mixtures
1.3.3 Processes in Ideal Gas Systems
1.3.3.1 Adiabatic Processes
1.3.3.2 Heat‐Only Process
1.3.3.3 Isothermal Process
1.3.3.4 Isochoric Process
1.3.3.5 Polytropic Process
1.3.4 Cycles
1.3.5 First Law of Thermodynamics
1.3.5.1 Non‐Flow Energy Equation
1.3.5.2 Steady‐Flow Energy Equation
1.3.5.3 Stagnation Properties
1.3.5.4 Isentropic Flow
1.3.5.5 Speed Parameter
1.3.5.6 Mass Flow Parameter
1.3.5.7 Applications of the Energy Equation
1.3.6 Second Law of Thermodynamics
1.3.6.1 Entropy
1.3.7 The Carnot Principle
1.3.8 Zeroth Law of Thermodynamics
1.3.8.1 Thermodynamic Scale of Temperature
1.3.9 Third Law of Thermodynamics
Problems Engineering Mechanics
Fluid Mechanics
Thermodynamics
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