Mechanical Engineering Heat TransferThis syllabus is designed to provide a comprehensive understanding of heat transfer principles in mechanical engineering. The course will cover various topics including steady state heat conduction, convective heat transfer, radiation, and heat exchangers. In addition, students will have the opportunity to practice their knowledge through practical tests.
Introduction to Heat Transfer- Introduction to the three modes of heat transfer: conduction, convection, and radiation
- Basic concepts and definitions related to heat transfer
- Importance of heat transfer in mechanical engineering applications
Steady State Heat Conduction- Fourier's law of heat conduction
- One-dimensional heat conduction equation
- Thermal conductivity and its significance
- Heat conduction in composite systems
Fins- Introduction to fins and their applications in heat transfer
- Types of fins and their design considerations
- Effect of fin geometry on heat transfer rate
- Fin efficiency and effectiveness
Basic Concepts of Convection- Introduction to convective heat transfer
- Boundary layer concept and its significance
- Convective heat transfer coefficient
- Thermal boundary layer and velocity boundary layer
Forced Convection- Introduction to forced convection
- Convective heat transfer in external flow
- Convective heat transfer in internal flow
- Heat transfer enhancement techniques in forced convection
Natural Convection- Introduction to natural convection
- Grashof number and its significance
- Free convection heat transfer from vertical and horizontal surfaces
- Natural convection in enclosures
Radiation- Introduction to thermal radiation
- Blackbody radiation and its properties
- Stefan-Boltzmann law and Wien's displacement law
- Radiative heat transfer between surfaces
Heat Exchangers- Introduction to heat exchangers and their applications
- Classification of heat exchangers
- Design considerations for heat exchangers
- Performance evaluation and analysis of heat exchangers
Boiling & Condensation- Introduction to boiling and condensation processes
- Pool boiling and film boiling phenomena
- Nucleate boiling and critical heat flux
- Condensation heat transfer and its modes
Practice Tests- Multiple choice questions and problem-solving exercises to reinforce the understanding of heat transfer principles
- Practice tests to evaluate the students' knowledge and preparation for exams
Evaporators- Introduction to evaporators and their applications
- Types of evaporators and their working principles
- Design considerations for evaporators
- Performance analysis and optimization of evaporators
This syllabus aims to provide a comprehensive understanding of heat transfer principles in mechanical engineering. By covering various topics related to heat conduction, convection, radiation, and heat exchangers, students will develop the necessary skills to analyze and design efficient heat transfer systems. Through practice tests and practical applications, students will be able to apply their knowledge and enhance their problem-solving abilities in the field of mechanical engineering heat transfer.
This course is helpful for the following exams: Mechanical Engineering