INTERMEDIATE HEAT AND MASS TRANSFER
- Course
- ENRE522 - INTERMEDIATE HEAT AND MASS TRANSFER
- Department
- Energy Systems Engineering - English - Master
- Course Type
- Course
- Status
- Required
- Language
- English
- Credit
- 3
- ECTS
- 0
- T+P+L
- 3 + 0 + 0
- Course Coordinator(s)
- -
- Prerequisite
- -
- Keywords
- -
Course Description
-
INTERMEDIATE HEAT AND MASS TRANSFER
Evaluation Tools (Active Term)
No evaluation items have been defined.
Course outcomes
- 01 1. Develop an appreciation for the fundamental concepts and principles that underlie heat transfer processes.
- 02 2. Illustrate that the knowledge of heat transfer can be used with the first law of thermodynamics.
- 03 3. Develop a deeper understanding of Fourier's law.
- 04 4. Develop the heat equation from basic principles.
- 05 5. Discuss the heat transfer with no internal generation of thermal energy.
- 06 6. Determine expressions for the temperature distribution and heat transfer rate in common geometries.
- 07 7. Introduce the concept of thermal resistance and to show how thermal circuits may be used to model heat flow.
- 08 8. Develop the means to perform convection transfer calculations.
- 09 9. Discuss physical origins of convection.
- 10 10. Develop important analogies associated with convection transfer.
Course Syllabus
| Week | Topic |
|---|---|
| Week 1 | Introduction to Heat Transfer Modes |
| Week 2 | Physical Origins and Rate Equations |
| Week 3 | Relationship to Thermodynamics |
| Week 4 | Introduction to Conduction |
| Week 5 | The Conduction Rate and Heat Diffusion Equations |
| Week 6 | Boundary and Initial Conditions |
| Week 7 | One-Dimensional Steady- State Conduction |
| Week 8 | Midterm Exams |
| Week 9 | Midterm Exams |
| Week 10 | Temperature Distribution for the Plane Wall |
| Week 11 | Thermal Resistance and Alternative Conduction Analysis |
| Week 12 | Introduction to Convection |
| Week 13 | The Convection Boundary Layers |
| Week 14 | Local and Average Convection Coefficients |
| Week 15 | Laminar and Turbulent Velocity Boundary Layers |
Reference Books & Course Materials
- 01 Bergman, T L and Lavine, A S 2017, Fundamentals of Heat and Mass Transfer, Eight Edition, John Wiley & Sons, USA
Learning Outcomes
- L01 1. Develop an appreciation for the fundamental concepts and principles that underlie heat transfer processes.
- L02 2. Illustrate that the knowledge of heat transfer can be used with the first law of thermodynamics.
- L03 3. Develop a deeper understanding of Fourier's law.
- L04 4. Develop the heat equation from basic principles.
- L05 5. Discuss the heat transfer with no internal generation of thermal energy.
- L06 6. Determine expressions for the temperature distribution and heat transfer rate in common geometries.
- L07 7. Introduce the concept of thermal resistance and to show how thermal circuits may be used to model heat flow.
- L08 8. Develop the means to perform convection transfer calculations.
- L09 9. Discuss physical origins of convection.
- L10 10. Develop important analogies associated with convection transfer.
Program Outcomes
No program outcomes have been defined.
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