Home  »  Institute of Science »  Master's of Energy Engineering with Thesis

COURSE UNIT TITLECOURSE UNIT CODESEMESTERTHEORY + PRACTICE (Hour)ECTS
CONDUCTIVE HEAT TRANSFER ENE505 - 3 + 0 10

TYPE OF COURSE UNITElective Course
LEVEL OF COURSE UNITMaster's Degree With Thesis
YEAR OF STUDY-
SEMESTER-
NUMBER OF ECTS CREDITS ALLOCATED10
NAME OF LECTURER(S)-
LEARNING OUTCOMES OF THE COURSE UNIT At the end of this course, the students;
1) An ability to use and derivate heat conduction equations
2) Learning separation of variables, integral, Laplace transform and numerical methods, integral and variation methods to solve heat conduction problems in cartesian, cylindrical and spherical coordinates.
3) Application of heat conduction equations to actual engineering problems
MODE OF DELIVERYFace to face
PRE-REQUISITES OF THE COURSENo
RECOMMENDED OPTIONAL PROGRAMME COMPONENTNone
COURSE DEFINITIONThis course includes; Continuum Concept, Formulation of steady and unsteady heat conduction problems for solution, Orthogonal Functions and Fourier Expansions, analytical and numerical solution methods of heat transfer problems.
COURSE CONTENTS
WEEKTOPICS
1st Week Introduction
2nd Week General information about heat transfer
3rd Week Solution of elementary problems in heat conduction
4th Week Steady state one dimensional heat conduction problems
5th Week Steady state one dimensional heat conduction problems
6th Week Serial solution of heat conduction problems
7th Week Bessel Differential Equations and Bessel Functions
8th Week MIDTERM
9th Week Two and Three Dimensional Heat Conduction Equations
10th Week Unsteady Heat Conduction: Solutions with Seperation of Variables
11th Week Solutions with Integral Transforms
12th Week Solutions with Laplace Transforms
13th Week Other Solution Techniques
14th Week Other Solution Techniques
RECOMENDED OR REQUIRED READINGKakaç, S. and Yener,Y., (1993), Heat Conduction, Third Edition, Philadelphia, Pa:Taylor and Francis
Genceli F. O., (2000), Çözümlü Isı İletim Problemleri, İstanbul, Birsen Yayınevi
Özişik, Necati M., (1993)Heat Conduction, 2nd Edition, John Wiley and Sons.
PLANNED LEARNING ACTIVITIES AND TEACHING METHODSLecture,Presentation
ASSESSMENT METHODS AND CRITERIA
 QuantityPercentage(%)
Mid-term135
Assignment13
Quiz110
Attendance12
Total(%)50
Contribution of In-term Studies to Overall Grade(%)50
Contribution of Final Examination to Overall Grade(%)50
Total(%)100
ECTS WORKLOAD
Activities Number Hours Workload
Midterm exam122
Preparation for Quiz428
Individual or group work14228
Preparation for Final exam6318
Course hours14342
Preparation for Midterm exam7321
Laboratory (including preparation)
Final exam133
Homework530150
Presentation (including preperation)13030
Quiz428
Total Workload310
Total Workload / 3010,33
ECTS Credits of the Course10
LANGUAGE OF INSTRUCTIONTurkish
WORK PLACEMENT(S)No
  

KEY LEARNING OUTCOMES (KLO) / MATRIX OF LEARNING OUTCOMES (LO)
LO1LO2LO3
K1  X   X   X
K2     
K3      X
K4     
K5      X
K6     
K7     
K8     
K9     
K10     
K11