Course Code:                               : 5103206

  Course Name                               : Advanced Engineering Thermodynamics II

  Instructor                                      : Prof. Dr. Bülent YEŞİLATA

  Theoretical /  Practical / Credit : 3 / 0 / 3

 Learning Activity

Estimated Time(Hour)

Evaluation

Theoretical Course (14 Week)

3 x 14 = 42

Participation to class

Guided Problem Solving

None

 

Individual Study

3 x 14 = 42

 

Weekly homework problems solving

1 x 14 = 14

Individual or teamwork and report preparation for homework’s.

Term project

None

 

Midterm Exam

4 x 2 = 8

Open/ Closed exam

Final Exam

Exam                  : 2

Individual work    : 8

Open/ Closed exam

Quiz (4 piece)

Individual work    : 8

Open/ Closed exam

Research (internet/library)

 

 

Other(………………………. )

 

 

Total Course Load (Hours)

124

 

 

 

HARRAN UNİVERSITY ENGINEERING FACULTY

MECHANICAL ENGI0NEERING DEPARTMENT

           

Course Name

Code

Semester

T+U

Credit

AKTS

 

Advanced Engineering Thermodynamics II

5103206

Spring

3+0

3

5

 

Prerequisite Courses

None

Language of Course

Turkish

Course class

Compulsory

Coordinator of Course

Prof. Dr. Bülent YEŞİLATA

Instructor

Prof. Dr. Bülent YEŞİLATA

Course Assistant

-

Objective of course

 1) Thermal engineering practices with modern techniques and tools necessary for developing, selecting and using the skills and give the ability to use information technology effectively

2) Complex a thermal system, process, device or product, under realistic constraints and conditions, to meet the specific requirements of teaching students how to design and develop the ability to practice the methods of modern design for this purpose.

Course Learning Output

1) Theoretical and applied knowledge gained in the field of mechanical engineering, thermodynamic modeling and solving problems for the application of skills,

2) Necessary for applications to the field of thermodynamic models, methods and means of selecting, using and developing skills.

3) The complex problems of thermal engineering to identify, formulate, and solve skills.

4) Select the appropriate analysis and modeling methods and practice, the ability to act individually or in teams.

5) Effectively using IT technologies, ability to follow scientific research in the field of thermodynamics, the ability to interpret and present.

Course Contents

Entropy, entropy Transactions isothermal change, entropy change of pure substances, isentropic process, reversible steady flow of entropy, exergy, exergy reduction principle, exergy balance for an open and closed systems, chemical reactions, thermodynamics, thermodynamics of metallurgical phenomena.

 

Weeks

Plan of Course at Semester

1

Entropy and applications

2

Transactions isothermal entropy change

3

Entropy change of pure substances

4

Isentropic process

5

Reversible steady flow of entropy

6

Entropy Act. Discussion about the current article

7

Exergy

8

Reduction principle and calculation of exergy

9

MID-TERM EXAM

10

Exergy balance for open systems

11

Exergy balance for closed systems

12

Exergy Act. Discussion about the current article

13

Introduction to chemical reaction thermodynamics

14

Introduction to metallurgical thermodynamics of events

 

General Sufficiency

The knowledge of basic thermodynamics, heat transfer and fluid mechanics principles and terminology. The knowledge of mathematics including multi-variable differential equations and advanced mathematics. Turkish to communicate effectively in oral and written. Mechanical Engineering in the field of scientific books and publications and to report to follow the level of technical knowledge of English.

 

Textbook/Recommended Reading

1] Thermodynamics-An Engineering Approach, Yunus A. Çengel & Micheal A. Boles; veya, Mühendislik Yaklaşımıyla Termodinamik, Yunus A. Çengel & Micheal A. Boles; Tercüme: Taner Derbentli

[2] Thermodynamics, William Z. Black & James G. Hartley

[3] Termodinamik I ve II, Prof.Dr. A. Rasim Büyüktür.

[4] Mühendislikte Temel Termodinamik, Doç. Dr. Bülent Yeşilata.

 

Form of Assessment

Mid Exam and Task/Project Average of Arithmetical: %40

Final:%60