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NİNOVA
DERSLER
YARDIM
HAKKINDA
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Fen Bilimleri Enstitüsü
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MIA 503E
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Dersin Bilgileri
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Ana Sayfa
Dersin Bilgileri
Dersin Haftalık Planı
Değerlendirme Kriterleri
Dersin Kaynakları
Dersin Bilgileri
Dersin Adı
Türkçe
İleri Akışkanlar Mekaniği
İngilizce
Advanced Fluid Dynamics
Dersin Kodu
MIA 503E
Kredi
Ders
(saat/hafta)
Uygulama
(saat/hafta)
Labratuvar
(saat/hafta)
Dönem

3
3


Dersin Dili
İngilizce
Dersin Koordinatörü
Hasan Güneş
Dersin Amaçları
• provide graduate students with knowledge in the key areas of advanced fluid dynamics.
• use this knowledge in the solution of engineering problems of interest.
Dersin Tanımı
Basic concepts. Flow kinematics. Classification of fluid motion. Conservation equations of viscous flows. Vorticity transport equation. LowReynolds number flows. Exact solution of viscous flow problems: Laminar boundary layers, Similarity solutions. Momentum Integral formulation. Boundary layer separation, Laminar jets, free shear layers. Introduction to flow instability and turbulence.
Dersin Çıktıları
1. A sound understanding of the governing equations in viscous fluid flows and their physical aspects.
2. Ability to formulate and solve lowReynolds number flows
3. Ability to simplify NavierStokes equations and obtain exact solutions to some simple viscous flow problems, e.g, Couette flow, Poiseuelle flow etc.
4. Ability to derive boundary layer equations in differential and integral forms.
5. Ability to solve integral and differential boundary layer equations.
6. A basic understanding of flow instability and turbulent flows.
Önkoşullar
Gereken Olanaklar
Diğer
Ders Kitabı
White, F.M., 2006. Viscous Fluid Flow, McGrawHill.
Diğer Referanslar
(1) Currie, I.G., 1993. Fundamental Mechanics of Fluids, McGraw_Hill.
(2) Schlichting, H. and Gersten, K. 2000. Boundary Layer Theory, SpringerBerlin.
(3) Panton, R. 1995. Incompressible flow, JohnWiley, New York.
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