Course Information
SemesterCourse Unit CodeCourse Unit TitleT+P+LCreditNumber of ECTS Credits
5MAK326Heat Transfer3+0+035

Course Details
Language of Instruction Turkish
Level of Course Unit Bachelor's Degree
Department / Program Mechanical Engineering
Mode of Delivery Face to Face
Type of Course Unit Compulsory
Objectives of the Course The aim of this course is to provide a good understanding of the physical principles of heat transfer.
Course Content Introduction of heat transfer modes; heat transfer with conduction, convection, and radiation. Temperature field, temperature gradient, Fourier law, differential equation of conduction heat transfer. Analytical solutions of one-dimensional, steady-state heat conduction equation, solutions for planar and cylindrical objects for different boundary conditions. Critical isolation thickness. Improvement of heat transfer. Sinks and fins. Analytical and graphical solutions of some simple transient heat transfer problems. Heat convection: Navier – Stokes, continuity and energy equations. Laminar and turbulent flows. Similarity and dimensionless numbers. Natural and forced convection. Heat radiation: fundamental laws of heat radiation. Heat radiation between paralel infinite walls. Shape factor. Heat transfer during phase changing.

Course Methods and Techniques
Prerequisites and co-requisities None
Course Coordinator None
Name of Lecturers Asist Prof.Dr. Bülent İmamoğlu
Assistants None
Work Placement(s) No

Recommended or Required Reading
Resources The Heat Transfer with Examples,Sadık Kakaç,Pelikan Publishing
Yunus A.Çengel,Heat Transfer,A Practical Approach, McGraw-Hill
Yunus A. Çengel,Introduction to Thermodynamics and Heat Transfer,McGraw-Hill
Holman,L.P. Heat Transfer,McGraw-Hill.
Lecture Notes
Kitap

Course Category
Mathematics and Basic Sciences %30
Engineering %40
Science %30

Planned Learning Activities and Teaching Methods
Activities are given in detail in the section of "Assessment Methods and Criteria" and "Workload Calculation"

Assessment Methods and Criteria
In-Term Studies Quantity Percentage
Mid-terms 1 % 40
Final examination 1 % 60
Total
2
% 100

 
ECTS Allocated Based on Student Workload
Activities Quantity Duration Total Work Load
Course Duration 14 3 42
Hours for off-the-c.r.stud 14 4 56
Mid-terms 1 15 15
Final examination 1 25 25
Total Work Load   Number of ECTS Credits 5 138

Course Learning Outcomes: Upon the successful completion of this course, students will be able to:
NoLearning Outcomes
1 Students will learn the concept of three modes of heat transfer,conduction,convection,and radiation and be able to calculate the combined rate of heat transfer.
2 Students will be able to formulate and solve one-dimensional heat conductionproblems,including composite walls,insulated pipes,fins,transient heat conduction and the application of one dimensional solution to multi-dimensional heat conduction problems.
3 Students will be able to find the convective heat transfer correlations and use them to calculate the heat transfer coefficients for various forced and natural convection geometries.
4 Students will be able to formulate and calculate the radiative heat transfer problems including the view factors and rate of heat transfer between surfaces.
5 Students will have basic knowledge about heat transfer during phase changing.


Weekly Detailed Course Contents
WeekTopicsStudy MaterialsMaterials
1 Introduction to heat transfer and heat transfer mechanisms. Lecture Notes
2 Fourier heat conduction formula. Lecture Notes
3 Continuous heat conduction Lecture Notes
4 One dimensional heat conduction and combined wall problems. Lecture notes
5 The time - dependant heat conduction Lecture notes
6 The fundamentals of convective heat transfer. Lecture notes
7 Forced outer convective heat transfer Ders Notları
8 Midterm Exam
9 Forced inner convective heat transfer. Lecture notes
10 Natural convection Lecture notes
11 Natural convection Lecture notes
12 Heat exchangers Lecture notes
13 Radiation heat transfer Lecture notes
14 Radiation heat transfer Lecture notes
15 Boiling and condensation Lecture notes
16 Final Sınavı


Contribution of Learning Outcomes to Programme Outcomes
P1 P2 P3 P4 P5 P6 P7 P8 P9 P10 P11
All 2 4 4
C1
C2
C3
C4
C5

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