FACULTY OF ENGINEERING
MECHANICAL ENGINEERING
MECHANICAL ENGINEERING
Course Name   AIR CONDITIONING SYSTEM DESIGN
Semester Course Code Theoretical / Practice time ECTS
7 1210766 3 / 0 4
Course Degree Bachelor's degree
Course Language İngilizce
Format of Delivery: Face to Face
Course Coordinator Prof.Dr. Şefik Bilir
Coordinator e-mail sbilir selcuk.edu.tr
Instructors
Asistant Instructors
Course Objectives To obtain required theoretical background and designing all types of air-conditioning systems and system units.
Basic Sciences Engineering Scinces Social Sciences Educational Sciences Artistic sciences Medical Science Agricultural sciences
20 80 0 0 0 0 0
Course Learning Methods and Techniquies
face to face at the classroom
Week Course Content Resource
1 Psychrometrics. Ideal gas equations of moist air Unpublished lecture notes
2 Psychrometric diagram. Psychrometric processes Unpublished lecture notes
3 Cooling load calculations Unpublished lecture notes
4 Cooling load calculations Unpublished lecture notes
5 Classification of air conditioning systems. Unpublished lecture notes
6 System units Unpublished lecture notes
7 Direct expansion (DX) systems Unpublished lecture notes
8 All-water air conditioning systems. Water-air air conditioning systems. Unpublished lecture notes
9 All-air air conditioning systems Unpublished lecture notes
10 Mid term exam
11 Psychrometric analysis. Duct design Unpublished lecture notes
12 Design of grills and anemostads. Design and calculation of piping systems. Unpublished lecture notes
13 Design and calculation of auxiliary equipment (fans, chiller, cooling tower, condense pot, chiller and cooing tower pumps, filters) Unpublished lecture notes
14 Design and calculation of auxiliary equipment (fans, chiller, cooling tower, condense pot, chiller and cooing tower pumps, filters) Unpublished lecture notes
15 Automatic control in air conditioning systems Unpublished lecture notes
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 : - - - -
Workshop / Laboratory Applications : - - - -
Case studies : - - - -
Field Studies : - - - -
Clinical Studies : - - - -
Other Studies : - - - -
Mid-term exam   1 40 - -
Final exam   - - 1 60
ECTS WORK LOAD TABLE   Number Duration
Course Duration : 14 3
Classroom Work Time : 14 5
Presentations and Seminars : - -
Course Internship : - -
Workshop / Laboratory Applications : - -
Field Studies : - -
Case studies : - -
Projects : - -
Homework : - -
Quiz : - -
Mid-term exam : 1 4
Final Exam : 1 4
ECTS 4
No COURSE LEARNING OUTCOMES CONTRIBUTION
D.Ö.Ç. 1 Adequate knowledge in mathematics, science and engineering subjects pertaining to the relevant discipline ability to use theoretical and applied information in these areas to model and solve engineering problems. 4
D.Ö.Ç. 2 Ability to identify, formulate, and solve complex engineering problems ability to and apply proper analysis and modeling methods for this purpose. 4
D.Ö.Ç. 3 Ability to design a complex system, process, device or product under realistic constraints and conditions, in such a way as to meet the desired result ability to apply modern design methods for this purpose. (Realistic constraints and conditions may include factors such as economic and environmental issues, sustainability, manufacturability, ethics, health, safety issues, and social and political issues, according to the nature of the design.) 4
D.Ö.Ç. 4 Ability to work efficiently in intra-disciplinary and multi-disciplinary teams ability to work individually. 4
D.Ö.Ç. 5 Awareness of professional and ethical responsibility. 4
* 1: Zayıf - 2: Orta - 3: İyi - 4: Çok İyi
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