MK013 Advanced Thermodynamics

6 ECTS - 3-0 Duration (T+A)- . Semester- 3 National Credit

Information

Code MK013
Name Advanced Thermodynamics
Semester . Semester
Duration (T+A) 3-0 (T-A) (17 Week)
ECTS 6 ECTS
National Credit 3 National Credit
Teaching Language İngilizce
Level Yüksek Lisans Dersi
Type Normal
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator


Course Goal

To expand students' undergraduate thermodynamics knowledge, to provide in-depth information about entropy and entropy balance, to provide an understanding of exergy and to teach exergy analysis for various thermal systems.

Course Content

Fundamentals of thermodynamics, first and second law of thermodynamics, entropy and exergy, and mass, energy, entropy and exergy balance for closed and open systems

Course Precondition

To have a basic knowledge on thermodynamics lecture

Resources

Advanced Thermodynamics for Engineers Desmond E. Winterbone and Ali Turan Elsevier

Notes

Exergy Analysis and Thermoeconomics of Buildings Authors: Jose Sala-Lizarraga, Ana Picallo Perez Elsevier Exergy Analysis of Heating, Refrigerating and Air Conditioning Ibrahim Dincer and Marc A. Rosen Elsevier Progress in Clean Energy Ibrahim Dincer · C. Ozgur Colpan Onder Kizilkan · M. Akif Ezan Springer


Course Learning Outcomes

Order Course Learning Outcomes
LO01 Understands characteristics of mass, energy, entropy and exergy balance equations.
LO02 Ability to apply the first and the second laws of the thermodynamics to closed and open systems
LO03 Understands entropy and enropy generation.
LO04 Ability to perform entropy balance for closed and open systems.
LO05 Understands exergy and related terms.
LO06 Ability to perform exergy balance for various power, refrigeration and air-conditioning systems.


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level
PLO01 Bilgi - Kuramsal, Olgusal Understands and applies basic sciences, mathematics and engineering sciences at a high level. 3
PLO02 Bilgi - Kuramsal, Olgusal He/she has extensive and in-depth knowledge, including the latest developments in his/her field. 2
PLO03 Beceriler - Bilişsel, Uygulamalı They reach the latest information in a field and have a high level of proficiency in the methods and skills necessary to comprehend and research them. 4
PLO04 Beceriler - Bilişsel, Uygulamalı They carry out a comprehensive study that brings innovation to science and technology, develops a new scientific method or technological product/process, or applies a known method to a new field. 3
PLO05 Beceriler - Bilişsel, Uygulamalı Independently perceives, designs, implements and concludes an original research process; manages this process. 3
PLO06 Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği Contributes to the science and technology literature by publishing the outputs of its academic studies in respected academic environments. 4
PLO07 Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği Evaluates scientific, technological, social and cultural developments and conveys them to the society with the awareness of scientific impartiality and ethical responsibility. 3
PLO08 Yetkinlikler - İletişim ve Sosyal Yetkinlik Performs critical analysis, synthesis and evaluation of ideas and developments in the field of expertise. 3
PLO09 Yetkinlikler - İletişim ve Sosyal Yetkinlik Communicates effectively, both verbally and in writing, with those working in the field of specialization and the wider scientific and social community, communicating and discussing at an advanced level of written, oral and visual communication using a foreign language at least at the C1 General Level of the European Language Portfolio.
PLO10 Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği Carring out literature survey


Week Plan

Week Topic Preparation Methods
1 Fundementals of thermodynamics Reading of lecture notes Öğretim Yöntemleri:
Anlatım
2 Balance equations Reading of lecture notes Öğretim Yöntemleri:
Anlatım, Alıştırma ve Uygulama
3 First law of thermodynamics Reading of lecture notes Öğretim Yöntemleri:
Anlatım, Alıştırma ve Uygulama
4 Second law of thermodynamics Reading of lecture notes Öğretim Yöntemleri:
Anlatım, Alıştırma ve Uygulama
5 Entropy generation Reading of lecture notes Öğretim Yöntemleri:
Alıştırma ve Uygulama
6 Entropy balance Reading of lecture notes Öğretim Yöntemleri:
Anlatım, Alıştırma ve Uygulama
7 Exergy Reading of lecture notes Öğretim Yöntemleri:
Anlatım, Alıştırma ve Uygulama
8 Mid term exam Mid term exam Ölçme Yöntemleri:
Yazılı Sınav
9 Exergy balance Reading of lecture notes Öğretim Yöntemleri:
Anlatım, Alıştırma ve Uygulama
10 Exergy analysis of power cycles Reading of lecture notes Öğretim Yöntemleri:
Anlatım, Alıştırma ve Uygulama
11 Exergy analysis of refrigeration cycles Reading of lecture notes Öğretim Yöntemleri:
Anlatım, Alıştırma ve Uygulama
12 Pschyometry Reading of lecture notes Öğretim Yöntemleri:
Soru-Cevap, Alıştırma ve Uygulama
13 Exergy analysis of air-conditioning systems Reading of lecture notes Öğretim Yöntemleri:
Alıştırma ve Uygulama, Tartışma
14 Examples Reading of lecture notes Öğretim Yöntemleri:
Alıştırma ve Uygulama, Tartışma, Soru-Cevap
15 Final exam Final exam Ölçme Yöntemleri:
Yazılı Sınav
16 Final exam Final exam Ölçme Yöntemleri:
Yazılı Sınav
17 Final exam Final exam Ölçme Yöntemleri:
Yazılı Sınav


Student Workload - ECTS

Works Number Time (Hour) Workload (Hour)
Course Related Works
Class Time (Exam weeks are excluded) 14 3 42
Out of Class Study (Preliminary Work, Practice) 14 5 70
Assesment Related Works
Homeworks, Projects, Others 0 0 0
Mid-term Exams (Written, Oral, etc.) 1 15 15
Final Exam 1 30 30
Total Workload (Hour) 157
Total Workload / 25 (h) 6,28
ECTS 6 ECTS