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

COURSE UNIT TITLECOURSE UNIT CODESEMESTERTHEORY + PRACTICE (Hour)ECTS
VISCOUS FLOW THEORY MAK516 - 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)Professor Tahir Yavuz
LEARNING OUTCOMES OF THE COURSE UNIT At the end of this course, the students;
1) Derivation of basic fluid mechanics formulations
2) Explicating of boundary layer concept and 3D forms of the basic equations
3) Application of viscous flow formulas to the actual engineering problems
4) Explicating results that were found
MODE OF DELIVERYFace to face
PRE-REQUISITES OF THE COURSENo
RECOMMENDED OPTIONAL PROGRAMME COMPONENTNone
COURSE DEFINITIONNavier-Stokes Equations and their solutions, Stokes and Oseen Solutions, Lubrication theory, Boundary layer theory, Similarity and approximate solutions, methods of numerical solutions, Stability, Turbulent boundary layers, Introductions of three dimensional turbulence boundary layers.
COURSE CONTENTS
WEEKTOPICS
1st Week Navier-Stokes equations
2nd Week Solutions the Navier-Stokes equations
3rd Week Stokes and Oseen solutions
4th Week Stokes and Oseen solutions
5th Week Lubrication theory
6th Week Laminar boundary layers and similarity solutions
7th Week Laminar boundary layers and similarity solutions
8th Week Momentum Integral formulations
9th Week Momentum Integral formulations
10th Week Methods of numerical solutions, Stability
11th Week Methods of numerical solutions, Stability
12th Week Turbulent boundary layers
13th Week Introduction to the three dimensional boundary layers
14th Week Introduction to the three dimensional boundary layers.
RECOMENDED OR REQUIRED READINGViscous Flows, Frank M. WHITE, Mc Graw Hill .
Fluids Mechanics, M.W.FRANK, Mc Graw Hill, 2003.
Introduction to Fluid Mechanics, Fox and Mc DONALD, Jhon Wiley and Sons, 1998.
Fundamentals of Fluid Mechanics, R. M. BRUCE, F.Y.DONALD, Jhon Wiley and Sons, 1994.
Fluid Dynamics, W.DAILY, D.R.F. HARLEMAN, Addison Wesley, 1994.
Fluid Mechanic, V.L.STREETER, E.B.WYLIE, Mc Graw Hill, 1988.
Akışkanlar Mekaniği, M.M.SOĞUKOĞLU, Yaylacık Matbaası, 1991
Mechanics of Fluid, W.J.DUNCAN,A.S.THOM, A.D.YOUNG, Edward Arnold, 1974.
Fundamentals of Fluid Mechanics, Mc Graw Hill, 1988.
Hidro-Aerodinamik, S. MÜFTÜOĞLU, İTÜ Makina Fakültesi, 1981.
Akışkanlar Mekaniği problemleri, M.E.ERDOĞAN, İTÜ Makina Fakültesi, 1982.

PLANNED LEARNING ACTIVITIES AND TEACHING METHODSQuestions/Answers,Lecture,Problem Solving,Experiment,Presentation
ASSESSMENT METHODS AND CRITERIA
 QuantityPercentage(%)
Mid-term130
Assignment510
Quiz310
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 exam133
Preparation for Quiz31030
Individual or group work14570
Preparation for Final exam14040
Course hours14342
Preparation for Midterm exam13030
Laboratory (including preparation)
Final exam133
Homework51575
Quiz313
Total Workload296
Total Workload / 309,86
ECTS Credits of the Course10
LANGUAGE OF INSTRUCTIONTurkish
WORK PLACEMENT(S)No
  

KEY LEARNING OUTCOMES (KLO) / MATRIX OF LEARNING OUTCOMES (LO)
LO1LO2LO3LO4
K1  X   X   X   X
K2       
K3      X   X
K4       
K5      X   X
K6       
K7       
K8       
K9       
K10       
K11        X