Course Code:                               : 5103241

  Course Name                               :  Numerical Methods in Fluid Dynamics

  Instructor                                      :  Asst. Assoc. Dr. İsmail HİLALİ

  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)

None

Open/ Closed exam

Research (internet/library)

6

 

Other(………………………. )

 

 

Total Course Load (Hours)

124

 

 

 

 

HARRAN UNİVERSITY ENGINEERING FACULTY

MECHANICAL ENGI0NEERING DEPARTMENT

           

Course Name

Code

Semester

T+U

Credit

AKTS

 

Numerical Methods in Fluid Dynamics

5103241

Spring

3+0

3

5

 

Prerequisite Courses

None

Language of Course

Turkish

Course class

Elective

Coordinator of Course

Asst. Assoc. Dr. İsmail HİLALİ

Instructor

Asst. Assoc. Dr. İsmail HİLALİ

Course Assistant

-

Objective of course

Computer-aided flow and Heat fundamentals of topics and CFD (Computational Fluid Dynamics) 's understanding.

Course Learning Output

With numerical methods, by analyzing different parameters depending on the flows, to make application

Course Contents

For two-dimensional and three-dimensional flow and heat applications, using the computer analysis software program such as the ability CFdesign

 

Weeks

Plan of Course at Semester

1

Fundamentals of computational fluid dynamics

2

Basic flow models

3

Network (MESH) design

4

Separation techniques

5

Linear and nonlinear systems analysis

6

convective systems and the expansion

7

turbulence models

8

The Importance of Basic Functions and Features of the program in engineering CFdesign Program Monitoring and Control Keys

9

Two-Dimensional Flow Analysis

10

Midterm exam

11

Two-Dimensional Thermal Analysis

12

Three-Dimensional Flow Analysis

13

Three-Dimensional Thermal Analysis

14

Two-and Three-dimensional Thermal and Flow Analysis

 

General Sufficiency

 

 

References

1.   Akışkanlar Mekaniği Prof. Dr. Yunus ÇENGEL

2.   www.cfdesign.com

Form of Assessment

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

Final:%60

Projects:-

Homework:-Will be announced on the web