Thermal Engineering 1st Edition by K Soman – Ebook PDF Instant Download/Delivery: 8120340485 ,9788120340480
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ISBN 10: 8120340485
ISBN 13: 9788120340480
Author: K Soman
Thermal Engineering 1st Edition Table of contents:
Chapter 1: Introduction to Thermodynamics
- 1.1 Basic Concepts of Thermodynamics
- 1.2 The Laws of Thermodynamics
- 1.3 Thermodynamic Systems and Properties
- 1.4 Energy, Work, and Heat
- 1.5 Applications of Thermodynamics in Engineering
Chapter 2: Thermodynamic Cycles
- 2.1 Carnot Cycle and Efficiency
- 2.2 Rankine Cycle and Steam Power Plants
- 2.3 Brayton Cycle and Gas Turbines
- 2.4 Refrigeration Cycles and Heat Pumps
- 2.5 Real Gas Behavior and Exergy Analysis
Chapter 3: Heat Transfer Fundamentals
- 3.1 Modes of Heat Transfer: Conduction, Convection, Radiation
- 3.2 Fourier’s Law of Heat Conduction
- 3.3 Newton’s Law of Cooling and Convection
- 3.4 Stefan-Boltzmann Law of Radiation
- 3.5 Heat Transfer Coefficients and Thermal Resistance
Chapter 4: Heat Conduction
- 4.1 Steady-State Heat Conduction in Solids
- 4.2 Thermal Conductivity of Materials
- 4.3 Transient Heat Conduction
- 4.4 Heat Conduction in Cylindrical and Spherical Coordinates
- 4.5 Applications of Heat Conduction in Engineering
Chapter 5: Heat Convection
- 5.1 Fundamentals of Convection Heat Transfer
- 5.2 Forced and Natural Convection
- 5.3 Convective Heat Transfer Coefficients
- 5.4 Laminar and Turbulent Flow Regimes
- 5.5 Heat Transfer in Heat Exchangers
Chapter 6: Heat Radiation
- 6.1 Basic Principles of Radiation Heat Transfer
- 6.2 Blackbody Radiation and Emissivity
- 6.3 View Factors and Radiation Exchange
- 6.4 Radiation in High-Temperature Systems
- 6.5 Applications of Radiation in Thermal Engineering
Chapter 7: Heat Exchangers
- 7.1 Types of Heat Exchangers: Shell-and-Tube, Plate, Fin-tube
- 7.2 Heat Exchanger Design and Analysis
- 7.3 Log Mean Temperature Difference (LMTD)
- 7.4 Effectiveness-NTU Method
- 7.5 Fouling and Maintenance in Heat Exchangers
Chapter 8: Power Generation and Thermal Systems
- 8.1 Steam Power Plants and Boilers
- 8.2 Gas Turbine Power Plants
- 8.3 Combined Cycle Systems
- 8.4 Nuclear Power Plants and Heat Generation
- 8.5 Solar Thermal Power Generation
Chapter 9: Refrigeration and Air Conditioning
- 9.1 Principles of Refrigeration
- 9.2 Vapour Compression Refrigeration Cycle
- 9.3 Absorption Refrigeration
- 9.4 Psychrometrics and Air Conditioning Systems
- 9.5 Cooling Load Calculations and System Design
Chapter 10: Internal Combustion Engines
- 10.1 Principles of IC Engines
- 10.2 Thermodynamics of Combustion
- 10.3 Engine Efficiency and Performance
- 10.4 Emission Control and Environmental Considerations
- 10.5 Alternate Fuels and Future Trends
Chapter 11: Computational Methods in Thermal Engineering
- 11.1 Numerical Methods in Heat Transfer
- 11.2 Finite Element Analysis (FEA) in Thermal Systems
- 11.3 Computational Fluid Dynamics (CFD) in Thermal Engineering
- 11.4 Software Tools for Thermal Engineering Design
- 11.5 Case Studies and Simulations
Chapter 12: Sustainable and Renewable Energy Systems
- 12.1 Overview of Renewable Energy Sources
- 12.2 Solar Thermal Systems and Applications
- 12.3 Wind Energy and Thermal Integration
- 12.4 Geothermal and Biomass Systems
- 12.5 Energy Storage and Thermal Efficiency
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K Soman,Thermal Engineering