Türkçe English Rapor to Course Content
COURSE SYLLABUS
THERMODYNAMICS I
1 Course Title: THERMODYNAMICS I
2 Course Code: OTO2007
3 Type of Course: Compulsory
4 Level of Course: First Cycle
5 Year of Study: 2
6 Semester: 3
7 ECTS Credits Allocated: 5
8 Theoretical (hour/week): 3
9 Practice (hour/week) : 0
10 Laboratory (hour/week) : 0
11 Prerequisites: None
12 Recommended optional programme components: None
13 Language: Turkish
14 Mode of Delivery: Face to face
15 Course Coordinator: Prof. Dr. ERHAN PULAT
16 Course Lecturers: Doç. Dr. NURETTİN YAMANKARADENİZ
17 Contactinformation of the Course Coordinator: pulat@uludag.edu.tr
0 224 2941982
Bursa Uludağ Üniversitesi, Mühendislik Fakültesi, Makina Müh. Bölümü, Oda No:217, Görükle, 16059, Bursa
18 Website:
19 Objective of the Course: Teaching of fundamental concepts and laws of thermodynamics by engineering approach.
20 Contribution of the Course to Professional Development Knowing performance limits of heat engines and having possible environmental effects of heat engines, refrigerators, and heat pumps. Constructing relations of thermodynamics with other engineering branches, social disciplines, and ecosystems.
21 Learning Outcomes:
1 Explaining of thermodynamic concepts and laws by proper using of thermodynamic terminıology.;
2 Doing distinction between pure substance and ideal gas, finding or determination of properties of substances.;
3 Using of first and second law of thermodynamics in problem solving.;
4 Doing proper assumptions to solve thermodynamic problems and obtaining thermodynamic data.;
5 Knowing performance limits of heat engines. Having possible environmental effects of heat engines, refrigerators, and heat pumps.;
6 Doing distinction between closed and open systems.;
7 Constructing relations of thermodynamics with other engineering branches, social disciplines, and ecosystems.;
22 Course Content:
Week Theoretical Practical
1 Introduction to thermodynamics, definitions, closed and open systems, properties, processes and cycle.
2 Pure substances, equilibrium diagrams, thermodynamic tables, equations of state, ideal gas equation of state.
3 Work and Heat. Moving boundary work.
4 Nature of work and heat, heat transfer rate and power.
5 First law of thermodynamics, internal energy, enthalpy, and specific heats.
6 First law analysis, internal energy, enthalpy and specific heats of ideal gases.
7 Second law of thermodynamics. Heat sources. Carnot’s principle. Heat engines. Thermal efficiency. Heat pumps and refrigerators. Coefficient of performance, Clausius’s and Kelvinb Planck’s statements.
8 Mid-term exam.
9 Reversible and irreversible processes. Carnot cycle. Thermodynamic temperature scale.
10 Entropy. Clausius’s inequalty. Property diagrams related to entropi. Increase of entropi principle.
11 Entropy change of pure substance. Entropi change of ideal gases. Reversible and irreversible processes of pure substances and ideal gases.
12 Control volume analysis. Continuity equation and first law of thermodynamics for control volumes. Flow work. Second law of thermodynamics for control volumes.
13 Steady State Steady Flow (SSSF) processes. Calculation of work for SSSF processes. Analysis of various SSSF processes encountered in engineering applications.
14 Uniform State Uniform Flow (USUF) processes. Analysis of USUF processes.
23 Textbooks, References and/or Other Materials: 1. Mühendislik Termodinamiğin Temelleri, Cilt 1, R. Yamankaradeniz, Nobel Yayın Dağıtım, Ekim 2004, Ankara.
2. Mühendislik Yaklaşımıyla Termodinamik, Y.A. Çengel, M.A. Boles, Türkçesi: T. Derbentli, McGraw-Hill Literatür Yayıncılık 3. Basım, Ekim 2000, İstanbul.
3. Çözümlü Problemlerle Termodinamik, A. Öztürk, A. Kılıç, 3. Basım, Çağlayan Kitapevi, 1993, İstanbul.
4. Çözümlü Termodinamik Problemleri, A.N. Eğrican, H. Atılgan, Pamuk Ofset, 1985, İstanbul.
5. Elements of Environmental Engineering: Thermodynamics and Kinetics, 2nd Ed., K. Valsaraj, Lewis Publishers, Inc., 2000.
6. Thermodynamics of Atmospheres and Oceans, J. A. Curry and P. J. Webster, Academic Press, 1999.
24 Assesment
TERM LEARNING ACTIVITIES NUMBER PERCENT
Midterm Exam 1 40
Quiz 0 0
Homeworks, Performances 0 0
Final Exam 1 60
Total 2 100
Contribution of Term (Year) Learning Activities to Success Grade 40
Contribution of Final Exam to Success Grade 60
Total 100
Measurement and Evaluation Techniques Used in the Course Classical Written Midterm and Final Exam
Information Test exam during pandemic period
25 ECTS / WORK LOAD TABLE
Activites NUMBER TIME [Hour] Total WorkLoad [Hour]
Theoretical 14 3 42
Practicals/Labs 0 0 0
Self Study and Preparation 14 2 28
Homeworks, Performances 0 0 0
Projects 0 0 0
Field Studies 0 0 0
Midtermexams 1 40 40
Others 0 0 0
Final Exams 1 40 40
Total WorkLoad 150
Total workload/ 30 hr 5
ECTS Credit of the Course 5
26 CONTRIBUTION OF LEARNING OUTCOMES TO PROGRAMME QUALIFICATIONS
PQ1 PQ2 PQ3 PQ4 PQ5 PQ6 PQ7 PQ8 PQ9 PQ10 PQ11 PQ12
LO1 5 5 0 0 0 0 0 0 0 0 0 0
LO2 5 5 0 0 0 0 0 0 0 0 0 0
LO3 5 5 0 0 0 0 0 0 0 0 0 0
LO4 5 5 0 0 0 0 0 0 0 0 0 0
LO5 5 5 0 0 0 0 0 0 0 0 0 0
LO6 5 5 0 0 0 0 0 0 0 0 0 0
LO7 5 5 0 0 0 0 0 0 0 0 0 0
LO: Learning Objectives PQ: Program Qualifications
Contribution Level: 1 Very Low 2 Low 3 Medium 4 High 5 Very High
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