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AKM 204E
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Course Information
Course Name
Turkish
Akışkanlar Mekaniği
English
Fluid Mechanics
Course Code
AKM 204E
Credit
Lecture
(hour/week)
Recitation
(hour/week)
Laboratory
(hour/week)
Semester
2
3
3
-
-
Course Language
English
Course Coordinator
Mehmet Özger
Course Objectives
1.To give the definition of fluids and unit systems,
2.To give the principles of hydrostatic and calculation of pressure forces,
3.To evaluate the basic equations for ideal and real fluids in the case of one,two and threedimensional flows (continuity, energy and impuls-momentum equations.) and their applications.
4.To examine the rotational and irrotational flows.
5.To give the boundary layer,dimensional analyses and similitude concepts.
Course Description
Introduction.Unit systems.Hydrostatic.Pressure at a point.Calculation of pressure forces.Kinematics of fluids.Basic equations of one dimensional flow (continuity, energy and impuls-momentum equations).One dimensional flow of ideal fluids.One dimensional flow of real fluids.Two and three dimensional flow of ideal fluids.Potential ( irrotational ) flows.Two and three dimensional flows of real fluids.Boundary layer.Dimensional Analyses and Simililitude.
Course Outcomes
Student, who passed the course satisfactorily can:
1. Learn the definition of fluids and convert the units and unit systems, (a)
2. Learn the principles of hyraulics and calculate the pressure forces on plane and curved surfaces, (a)
3. Apply the basic equations of ideal and real fluids for practical problems, (a, e)
4. Check the flow rotational or irrotational,
5. Give interpretation about boundary layer,dimensional analyses and similitude, (e)
6. Gain the skill of application of these concepts.
Pre-requisite(s)
Required Facilities
Other
Textbook
D.F. Young, B. R. Munson, T. H. Okiishi, W. W. Huebsch, Introduction to Fluid Mechanics, SI Version, 5th Edition, November 2011, Wiley
Other References
Hidrolik, B. Mutlu Sümer, İstemi Ünsal, Mehmetçik Beyazıt, Birsen Yayınevi
Robert W. Fox, Alan T. McDonald, Philip J. Pritchard, Fluid Mechanics, International Student Version, 8th Edition, October 2011, Wiley.
Clayton T. Crowe, Engineering Fluid Mechanics, International Student Version, 9th Edition, Wiley.
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