Information
| Unit | CEYHAN FACULTY OF ENGINEERING |
| MECHANICAL ENGINEERING PR. | |
| Code | MMS401 |
| Name | Internal Combustion Engines |
| Term | 2017-2018 Academic Year |
| Semester | 7. Semester |
| Duration (T+A) | 3-0 (T-A) (17 Week) |
| ECTS | 4 ECTS |
| National Credit | 3 National Credit |
| Teaching Language | Türkçe |
| Level | Belirsiz |
| Type | Normal |
| Label | E Elective |
| Mode of study | Yüz Yüze Öğretim |
| Catalog Information Coordinator | Prof. Dr. ABDULKADİR YAŞAR |
| Course Instructor |
Prof. Dr. ABDULKADİR YAŞAR
(Güz)
(A Group)
(Ins. in Charge)
|
Course Goal / Objective
This course aims to teach the fundamentals of internal combustion engines, performance parameters, fuels, combustion theory, exhaust emission formation mechanism and emission control methods
Course Content
Description of internal combustion engines. Engine design and operating parameters. Basic thermodynamics and gas dynamics. Idealized engine cycles and efficiency. Combustion theory. Heat transfer in engines. Injection, cooling, lubricating, starting, charging systems. Turbochargers and supercharging. High speed diesel engines. New developments of Internal Combustion Engines.
Course Precondition
Yok
Resources
Notes
123
Course Learning Outcomes
| Order | Course Learning Outcomes |
|---|
Relation with Program Learning Outcome
| Order | Type | Program Learning Outcomes | Level |
|---|
Week Plan
| Week | Topic | Preparation | Methods |
|---|---|---|---|
| 1 | Introduction to internal combustion engines | Read the related topics in the lecture notes and reference books | |
| 2 | Fundamental definitions as performance, volumetric, thermal and mechanical efficiencies, mean effective pressure, specific fuel consumption | Read the related topics in the lecture notes and reference books | |
| 3 | Fundamental definitions as performance, volumetric, thermal and mechanical efficiencies, mean effective pressure, specific fuel consumption | Read the related topics in the lecture notes and reference books | |
| 4 | Combustion in spark ignition engines, cyclic differences, engine knock and octane number | Read the related topics in the lecture notes and reference books | |
| 5 | Combustion in spark ignition engines, cyclic differences, engine knock and octane number | Read the related topics in the lecture notes and reference books | |
| 6 | Fundamental computer modelling for calculation of combustion in SI engines | Read the related topics in the lecture notes and reference books | |
| 7 | Fundamental computer modelling for calculation of combustion in SI engines | Read the related topics in the lecture notes and reference books | |
| 8 | Midterm | ||
| 9 | Diesel engines, cetane number and diesel combustion chamber types | Read the related topics in the lecture notes and reference books | |
| 10 | Diesel engines, cetane number and diesel combustion chamber types | Read the related topics in the lecture notes and reference books | |
| 11 | Ideal engine cycles and efficiencies | Read the related topics in the lecture notes and reference books | |
| 12 | Ideal engine cycles and efficiencies | Read the related topics in the lecture notes and reference books | |
| 13 | Stoichiometry, dissociation and heat transfer to cylinder walls from combustion products | Read the related topics in the lecture notes and reference books | |
| 14 | Stoichiometry, dissociation and heat transfer to cylinder walls from combustion products | Read the related topics in the lecture notes and reference books | |
| 15 | Emissions and emission control methods | Read the related topics in the lecture notes and reference books | |
| 16 | Final Exam | ||
| 17 | Final Exam |
Assessment (Exam) Methods and Criteria
| Assessment Type | Midterm / Year Impact | End of Term / End of Year Impact |
|---|---|---|
| 1. Midterm Exam | 100 | 40 |
| General Assessment | ||
| Midterm / Year Total | 100 | 40 |
| 1. Final Exam | - | 60 |
| Grand Total | - | 100 |