Objective
To develop basic concepts, laws of thermodynamics and heat transfer and their applications.
Syllabus
- Introduction
- Definition and scope of Engineering Thermodynamics
- Value of energy to society
- Microscopic versus Macroscopic Viewpoint
- Concepts and definitions
- System, Surrounding, Boundary and Universe, Closed Systems, Open Systems, and Isolated Systems
- Thermodynamic Properties: Intensive, Extensive and Specific Properties
- Thermodynamics Equilibrium
- State, Process and Path, Cyclic Process, Quasi-equilibrium Process, Reversible and Irreversible Process
- Common Properties, Pressure, Specific Volume, Temperature
- Zeroth Law Thermodynamics, Equality of Temperature
- Energy and Energy Transfer
- Energy and its meaning
- Stored Energy and Transient Energy, Total Energy
- Energy Transfer
- Heat Transfer
- Work Transfer
- Expression for displacement work Transfer
- Power
- Properties of Common Substance
- Pure Substance and State Postulate
- Ideal Gas and Ideal Gas Relations
- Two Phase (Liquid and Vapor) System: Phase Change, Subcooled Liquid, Saturated Liquid, Wet Mixture, Critical Point, Quality, Moisture Content, Saturated Vapor and Superheated Vapor
- Properties of Two Phase Mixtures
- Other Thermodynamic Properties: Internal Energy, Enthalpy, and Specific Heats
- Development of Property Data: Graphical Data Presentation and Tabular Data Presentation
- First Law of Thermodynamics
- First Law of thermodynamics for Control mass, and for Control mass undergoing cyclic process
- First law of Thermodynamics for Control Volume
- Control Volume Analysis: Steady State Analysis and Unsteady state analysis
- Control Volume application: Steady and Unsteady Work Applications and Steady and Unsteady flow applications
- Other statements of the first law
- Second Law of Thermodynamics
- Necessity of formation of Second law
- Entropy and second law of thermodynamics for an isolated system
- Reversible and irreversible Processes
- Entropy and Process Relation for an Ideal Gases and Incompressible substances
- Control mass and control volume formulation of second law
- Isentropic process for an Ideal gas and for an incompressible substances
- Carnot Cycle, Carnot Efficiency
- Heat Engine and Thermal Efficiency, Heat Pump, Refrigerator and coefficient of Performance(COP)
- Kelvin-Planck and Clausius Statenebts of the Second law of thermodynamics and their equivalence
- Thermodynamic Cycles
- Classification of Cycles
- Air Standard Analysis
- Otto Cycle
- Diesel Cycle
- Brayton Cycle
- Rankine Cycle
- Vapor Compression Refrigeration Cycle
- Introduction to Heat Transfer
- Basic Concepts and Modes of Heat Transfer
- One dimensional steady state heat conduction through a plane wall
- Radial steady state heat conduction through a hollow cylinder
- Heat flow through composite structures
- Composite Plane wall
- Multilayer tubes
- Electrical Analogy for thermal resistance
- Combined Heat Transfer and Overall Heat Transfer Coefficient for Plane Wall and Tube
- Nature of Convection; Free and Forced Convection
- Heat Radiation, Stefan's Law, Absorptivity, Reflectivity and Transmissivity; Black Body, White Body and Gray Body