Course
CEED1112464
ADVANCED FLUID MECHANICS
- LECTURE
- 3
- LAB
- 0
- CREDITS
- 3
- ECTS
- 8
AIM
Mathamatical defination of the fluid mechanics.
CONTENT
This course contains; Fundemental Mathmetical Definations,Fundemental Mathmetical Definations, Derivation of Continuity Equation,Equations of Motion, Euler Equations of Motion for Inviscid Fluid, Bernoulli Equations, Navier-Stokes equations of motion of Viscous Fluid (1),Navier-Stokes equations of motion of Viscous Fluid (2),Navier-Stokes equations of motion of Viscous Fluid and solution techniques (1),Navier-Stokes equations of motion of Viscous Fluid and solution techniques (2),Turbulent Flow of Compressible Viscous Fluids, Reynolds Equations (1),Turbulent Flow of Compressible Viscous Fluids, Reynolds Equations (2),Potantial Flow Theory (1),Potantial Flow Theory (2),Boundary Layer Theory (1),Boundary Layer Theory (2),Diffusion and Dispersion.
LEARNING OUTCOMES
- 1
Researches fundamental equations of hydraulic engineering.
Taught by: Problem Solving Method, Self Study Method, Brainstorming Technique · Assessed by: Traditional Written Exam, Homework
- 2
Categorizes basic subjects in hydraulic engineering.
Taught by: Problem Solving Method, Self Study Method, Brainstorming Technique · Assessed by: Traditional Written Exam, Homework
- 3
Evaluets close by related engineering branches such as fluid dynamics for hydraulic engineering.
Taught by: Problem Solving Method, Self Study Method, Brainstorming Technique · Assessed by: Traditional Written Exam, Homework
- 4
Examines dynamic movements of fluids.
Taught by: Problem Solving Method, Self Study Method, Brainstorming Technique · Assessed by: Traditional Written Exam, Homework
WEEKLY PLAN
- WEEK 1
Fundemental Mathmetical Definations
Preparation: Related Textbook / Related Chapter
- WEEK 2
Fundemental Mathmetical Definations, Derivation of Continuity Equation
Preparation: Related Textbook / Related Chapter
- WEEK 3
Equations of Motion, Euler Equations of Motion for Inviscid Fluid, Bernoulli Equations
Preparation: Related Textbook / Related Chapter
- WEEK 4
Navier-Stokes equations of motion of Viscous Fluid (1)
Preparation: Related Textbook / Related Chapter
- WEEK 5
Navier-Stokes equations of motion of Viscous Fluid (2)
Preparation: Related Textbook / Related Chapter
- WEEK 6
Navier-Stokes equations of motion of Viscous Fluid and solution techniques (1)
Preparation: Related Textbook / Related Chapter
- WEEK 7
Navier-Stokes equations of motion of Viscous Fluid and solution techniques (2)
Preparation: Related Textbook / Related Chapter
- WEEK 8
Turbulent Flow of Compressible Viscous Fluids, Reynolds Equations (1)
Preparation: Related Textbook / Related Chapter
- WEEK 9
Turbulent Flow of Compressible Viscous Fluids, Reynolds Equations (2)
Preparation: Related Textbook / Related Chapter
- WEEK 10
Potantial Flow Theory (1)
Preparation: Related Textbook / Related Chapter
- WEEK 11
Potantial Flow Theory (2)
Preparation: Related Textbook / Related Chapter
- WEEK 12
Boundary Layer Theory (1)
Preparation: Related Textbook / Related Chapter
- WEEK 13
Boundary Layer Theory (2)
Preparation: Related Textbook / Related Chapter
- WEEK 14
Diffusion and Dispersion
Preparation: Related Textbook / Related Chapter
ASSESSMENT
- Rate of Midterm Exam to Success50%
- Rate of Final Exam to Success50%
WORKLOAD
| ACTIVITY | COUNT | HOURS | TOTAL |
|---|---|---|---|
| Course Hours | 14 | 3 | 42 |
| Guided Problem Solving | 0 | 0 | 0 |
| Resolution of Homework Problems and Submission as a Report | 1 | 8 | 8 |
| Term Project | 16 | 10 | 160 |
| Presentation of Project / Seminar | 0 | 0 | 0 |
| Quiz | 0 | 0 | 0 |
| Midterm Exam | 1 | 8 | 8 |
| General Exam | 1 | 8 | 8 |
| Performance Task, Maintenance Plan | 0 | 0 | 0 |
READING
- Kundu, P., K. And Cohen, I.R., 2004, “Fluid Mechanics”, Elsevier
- lecture notes
TEACHING STAFF
- Assist.Prof. Ahmet DURAPCOORDINATOR
- Prof.Dr. Zekai ŞEN