Course Details

HEAT TRANSFER

ME352

Course Information
SemesterCourse Unit CodeCourse Unit TitleT+P+LCreditNumber of ECTS Credits
6ME352HEAT TRANSFER2+1+035

Course Details
Language of Instruction English
Level of Course Unit Bachelor's Degree
Department / Program MECHANICAL ENGINEERING
Type of Program Formal Education
Type of Course Unit Compulsory
Course Delivery Method Face To Face
Objectives of the Course Showing the tools that will allow you to solve a wide range of heat transfer problems both analytically and numerically,
Developing an understanding of the parameters that govern heat transfer problems; these include things like time constants, thermal resistances, nondimensional parameters, etc.
Designing and analyzing the performance of heat exchangers and evaporators,
Characterizing the transient conduction problems, where temperature depends on time.
Course Content This course aims to introduce the basic understanding, principal concepts and methods of heat transfer processes and their application to engineering problems. Students will be able to develop the fundamental principles and laws of heat transfer and explore the implications of these principles for a thermal system. The topics of steady and transient heat conduction in systems, internal and external forced convection, natural convection, condensation, heat transfer by radiation and heat exchangers will be solved analytically as well as simulating numerically using the finite difference method and comparisons will be made.
Course Methods and Techniques Homework Assignments
Exams
Active Participation
Prerequisites and co-requisities ( ME237 )
Course Coordinator Asist Prof.Dr. SİNAN KESRİKLİOĞLU sinan.kesriklioglu@agu.edu.tr
Name of Lecturers Asist Prof.Dr. SİNAN KESRİKLİOĞLU
Assistants None
Work Placement(s) No

Recommended or Required Reading
Resources One-Dimensional, Steady-State Heat Conduction Thermal Resistance Concept in Planes, Cylinders, and Spheres Steady-State 1-D Conduction with Generation in Plane Walls, Boundary Conditions Uniform Thermal Energy Generation in Radial Geometries Numerical Solutions to Steady-State 1-D Conduction Problems Analytical Solutions for Constant Cross-Section Extended Surfaces Analytical Solutions to 0-D and Semi-Infinite 1-D Transient Problems External Forced Convection Internal Forced Convection and Natural Convection Heat Exchangers Radiation Heat Transfer
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Course Category
Mathematics and Basic Sciences %25
Engineering %50
Engineering Design %25
Social Sciences %0
Education %0
Science %0
Health %0
Field %0

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
Quiz/Küçük Sınav 1 % 30
Ödev 3 % 30
Final examination 1 % 40
Total
5
% 100

 
ECTS Allocated Based on Student Workload
Activities Quantity Duration Total Work Load
Araştırma Ödevi 14 1 14
Yazılı Sınav 1 20 20
F2F Dersi 14 2 28
Ev Ödevi 3 8 24
Soru Çözümü 14 1 14
Kısa Sınav 1 15 15
Okuma 1 7 7
Teknik Gezi 1 6 6
Final Sınavı 1 25 25
Total Work Load   Number of ECTS Credits 5 153

Course Learning Outcomes: Upon the successful completion of this course, students will be able to:
NoLearning Outcomes
1 Model steady state heat transfer problems
2 Solve transient conduction problems, where temperature depends on time
3 Derive solutions for internal and external forced convection as well as natural convection
4 Design and analyze the performance of heat exchangers


Weekly Detailed Course Contents
WeekTopicsStudy MaterialsMaterials
1 Introduction to Heat Transfer
2 One-Dimensional, Steady-State Heat Conduction
3 Thermal Resistance Concept in Planes, Cylinders, and Spheres
4 Steady-State 1-D Conduction with Generation in Plane Walls, Boundary Conditions
5 Uniform Thermal Energy Generation in Radial Geometries
6 Numerical Solutions to Steady-State 1-D Conduction Problems
7 Analytical Solutions for Constant Cross-Section Extended Surfaces
8 Spring Break
9 Active Learning Week
10 Midterm
11 Analytical Solutions to 0-D and Semi-Infinite 1-D Transient Problems
12 External Forced Convection
13 Internal Forced Convection and Natural Convection
14 Heat Exchangers
15 Radiation Heat Transfer


Contribution of Learning Outcomes to Programme Outcomes
P1 P2 P3 P4 P5 P6 P7 P8 P9 P10
C1 4 4 4 3 3 2 3 4 4
C2 5 4 4 3 4 2 3 4 4
C3 4 4 3 3 4 2 3 4 4
C4 5 5 4 4 5 3 4 2 5 5

Contribution: 1: Very Slight 2:Slight 3:Moderate 4:Significant 5:Very Significant


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