ADVANCED ENGINEERING THERMODYNAMICS
- Course
- ENRE605 - ADVANCED ENGINEERING THERMODYNAMICS
- Department
- Energy Systems Engineering - English - PhD
- Course Type
- Course
- Status
- Required
- Language
- English
- Credit
- 3
- ECTS
- 8
- T+P+L
- 3 + 0 + 0
- Course Coordinator(s)
- -
- Prerequisite
- -
Course Description
This course covers the fundamentals of thermodynamics, phase equations, Legendre transforms, Maxwell relations, combustion and chemical reactions, chemical and phase equilibrium, and thermodynamic analysis of reacting systems.
ADVANCED ENGINEERING THERMODYNAMICS
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Course outcomes
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Course Syllabus
| Week | Topic |
|---|---|
| Week 1 | Thermodynamic Principles and First Law of Thermodynamics |
| Week 2 | Review of Entropy, The Entropy Maximum and Energy Minimum Principles, Entropy Generation |
| Week 3 | Fuels and combustion, Theoretical and actual combustion processes |
| Week 4 | First-law analysis of reacting systems |
| Week 5 | Adiabatic flame temperature, Second-law analysis of reacting systems |
| Week 6 | Modelling of combustion process using EES |
| Week 7 | Modelling of combustion process using EES |
| Week 8 | Mid-term Exams |
| Week 9 | Mid-term Exams |
| Week 10 | The Fundamental Relation, Legendre Transforms, Maxell’s Relations, Clapeyron equation |
| Week 11 | Ideal Gas Mixtures, The Joule-Thomson coefficient, Real Gas Mixtures |
| Week 12 | Criterion for chemical equilibrium, The equilibrium constant (KP) for ideal-gas mixtures, |
| Week 13 | Chemical equilibrium for simultaneous reactions, Phase equilibrium for a single-component system |
| Week 14 | The phase rule, Phase equilibrium for a multicomponent system |
| Week 15 | Presentations |
Reference Books & Course Materials
- 01 Cengel, Y A and Boles, M A 2015, Thermodynamics: An Engineering Approach, Eight Edition, McGraw-Hill
- 02 M. Khaljani, R.K. Saray, K. Bahlouli Comprehensive analysis of energy, exergy and exergo-economic of cogeneration of heat and power in a combined gas turbine and organic Rankine cycle Energy Convers Manag, 97 (2015), pp. 154-165
- 03 ADRIAN BEJAN, Advanced Engineering Thermodynamics, Wiley
Learning Outcomes
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Program Outcomes
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