FACULTY OF ENGINEERING
MECHANICAL ENGINEERING
MECHANICAL ENGINEERING
Course Name   HEATING, VENTILATION AND AIR CONDITIONING SYSTEMS
Semester Course Code Theoretical / Practice time ECTS
7 1210767 3 / 0 4
Course Degree Bachelor's degree
Course Language Turkish
Format of Delivery: Face to Face
Course Coordinator Prof. Dr. Kemal ALTINIŞIK
Coordinator e-mail kaltinisik selcuk.edu.tr
Instructors
Asistant Instructors
Course Objectives 1. Teaching basics of HVAC engineering 2. Teaching tı the students how to best interior and exterior design conditions 3. Teaching the calculation of heating and cooling thermal loads 4. Teaching the calculation of energy consumption
Basic Sciences Engineering Scinces Social Sciences Educational Sciences Artistic sciences Medical Science Agricultural sciences
0 100 0 0 0 0 0
Course Learning Methods and Techniquies
Face to face lecturing, Mid-term Project works
Week Course Content Resource
1 Introduction, Building Energy Consumption, HVAC Systems: Conseptional Approach, Thermodynamics Principles of Heating Ventilating and Air conditioning , R.H.Howell, H.J.Saurer. W.J.Coad, ASHRAE, 1998
2 Internal Air Design Conditions Text Book
3 External Air Design Conditions Text Book
4 Heating Load Calculation, TMMO calculation method Text Book
5 Heating Load Calculation, Mid-term exam Text Book
6 Cooling Load Calculation: CLTD method Text Book
7 Cooling Load Calculation: Thermal Properties of Building Materials, Windows Text Book
8 Mid-term Exam
9 Cooling Load Calculation: Internal Loads, examples Text Book
10 Cooling Load Calculation: Computer Programs Text Book
11 Energy Calculation Methods: Degree-Day Method Text Book
12 Energy Calculation Methods: BIN Method Text Book
13 Psychometric, Properties of Moistured Air Text Book
14 Basic HVAC System Calculations Text Book
15 Room Perceptible Heat Factor, Heavy Perceptible Heat Factor, Instrument Dew Point Text Book
Assesment Criteria   Mid-term exam Final exam
  Quantity Percentage Quantity Percentage  
Term Studies : - -
Attendance / Participation : - -
Practical Exam : - -
Special Course Exam : - -
Quiz : - -
Homework : - -
Presentations and Seminars : - -
Projects : 1 20
Workshop / Laboratory Applications : - -
Case studies : - -
Field Studies : - -
Clinical Studies : - -
Other Studies : - -
Mid-term exam   2 40
Final exam   1 40
ECTS WORK LOAD TABLE   Number Duration
Course Duration : 14 3
Classroom Work Time : 14 3
Presentations and Seminars : - -
Course Internship : - -
Workshop / Laboratory Applications : - -
Field Studies : - -
Case studies : - -
Projects : 1 5
Homework : - -
Quiz : - -
Mid-term exam : 2 8
Final Exam : 1 15
ECTS 4
No COURSE LEARNING OUTCOMES CONTRIBUTION
D.Ö.Ç. 1 Ability of defining, formulating and solving mechanical engineering problems 4
D.Ö.Ç. 2 Having knowledge of effects of mechanical engineering on national and global scale and being capable of interpreting 4
D.Ö.Ç. 3 Ability of designing and processing experiments, analyzing and reading the results, using modern instruments 4
D.Ö.Ç. 4 Ability of Selecting, Designing and Improving a part, machine or process to fulfill expected performance, manufacturing properties and affordability 4
D.Ö.Ç. 5 Ability of working and/or leading in multi disciplinary teams 4
D.Ö.Ç. 6 Understanding the importance of life-time education and applying it 4
D.Ö.Ç. 7 Having knowledge about contemporary subjects of mechanical engineering 4
D.Ö.Ç. 8 Ability of using modern engineering methods such as computer programs and information accessing possibilities on engineering design and analysis 4
D.Ö.Ç. 9 Having knowledge on mechanical engineering application field and getting application experience 4
D.Ö.Ç. 10 Ability of using mathematics, science and engineering knowledge for solving Mechanical engineering problems 4
D.Ö.Ç. 11 Having professional and ethical responsibilities 4
* 1: Zayıf - 2: Orta - 3: İyi - 4: Çok İyi
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