COURSE INFORMATON
Course Title Code Semester L+P Hour Credits ECTS
Internal Combustion Engines AEN   369 5 3 3 4

Prerequisites and co-requisites
Recommended Optional Programme Components None

Language of Instruction English
Course Level First Cycle Programmes (Bachelor's Degree)
Course Type
Course Coordinator Prof. Dr. Ali KESKİN
Instructors
Prof. Dr.KADİR AYDIN1. Öğretim Grup:A
 
Assistants
Goals
This course aims to teach the fundamentals of internal combustion engines, performance parameters, fuels, combustion theory, exhaust emission formation mechanism and emission control methods
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.

Learning Outcomes
1) Learns operating principles of petrol and diesel engines,
2) automotive fuels,
3) thermodynamic cycles,
4) exhaust and in-cylinder flows,
5) induction,
6) combustion theory,
7) combustion modelling in internal combustion engines,
8) exhaust emission formation and emission restricted exhaust systems
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Course's Contribution To Program
NoProgram Learning OutcomesContribution
12345
1
Utilizes computer systems and softwares
X
2
Is equipped with a variety of skills and techniques in engineering.
X
3
Generates solutions for the problems in other disciplines by using statistical techniques
X
4
Designs a system, component or process so as to meet various engineering needs within technical, economic, environmental, manufacturability, sustainability limitations.
X
5
Comprehends visual, database and web programming techniques and has the ability of writing objective program
X
6
Examines and learns applications in an enterprise independently, makes critical assesments of problems, formulates problems and selects suitable techniques for solutions.
X
7
Leads the identification, development and usage of a product or production method.
X
8
Is aware of the need for lifelong learning and self-renew
X
9
Has effective oral and written English for technical or non-technical use
X
10
Uses computers very effectively, makes computer-aided drafting, designs, analysis, and presentations.
X
11
Improves constantly itself , as well as professional development scientific, social, cultural and artistic fields according to his/her interests and abilities identifying needs of learning.
X
12
Is aware of the technical and ethical responsibilities, has inquisitive and innovative quality
X

Course Content
WeekTopicsStudy Materials _ocw_rs_drs_yontem
1 Introduction to Internal Combustion Engines Lecture Notes Lecture
Question-Answer
Problem Solving
2 Automotive Fuels Lecture Notes Lecture
Question-Answer
Problem Solving
3 Engine Performance Lecture Notes Lecture
Question-Answer
Problem Solving
4 Thermodynamic Cycles Lecture Notes Lecture
Question-Answer
Problem Solving
5 Intake, Exhaust and In-cylinder Flows Lecture Notes Lecture
Question-Answer
Problem Solving
6 Intake, Exhaust and In-cylinder Flows Lecture Notes Lecture
Question-Answer
Problem Solving
7 Combustion Theory Lecture Notes Lecture
Question-Answer
Problem Solving
8 Midterm Examination Lecture Notes Testing
9 Combustion Theory Lecture Notes Lecture
Question-Answer
Problem Solving
10 Combustion in Spark Ignition Engines Lecture Notes Lecture
Question-Answer
Problem Solving
11 Combustion in Compression Ignition Engines Lecture Notes Lecture
Question-Answer
Problem Solving
12 Internal Combustion Engine Exhaust Emissions Lecture Notes Lecture
Question-Answer
Problem Solving
13 Exhaust Emission Control Lecture Notes Lecture
Question-Answer
Problem Solving
14 Discussion of Homeworks Lecture Notes Lecture
Question-Answer
Problem Solving
15 Discussion of Homeworks Lecture Notes Lecture
Question-Answer
Problem Solving
16-17 Final Examination Lecture Notes Testing

Recommended or Required Reading
Textbook
Additional Resources