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Lecture
Turbulence: Modeling and Simulation
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Turbulence: Numerical Flow Simulation
Explores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Turbulence: Numerical Flow Simulation
Explores the challenges of turbulence, simple turbulent flows, and numerical simulation methods.
Turbulence Modeling
Explores turbulence characteristics, modeling challenges, and various numerical simulation methods.
Numerical Flow Simulation: Fundamentals
Covers the fundamentals of numerical flow simulation, emphasizing the importance of understanding the methodology and practicing simulation techniques to run full simulations autonomously.
Turbulence Concepts: Reynolds Decomposition and Closure Problem
Explores Reynolds decomposition, closure problem, and turbulence modeling challenges.
Introduction to Free Convection: Governing Equations
Explores free convection, laminar flow boundary layer equations, and heat transfer principles.
Turbulence Simulation and Models
Explores turbulence simulation, focusing on CFD, DNS, RANS, and LES.
Fluid Dynamics Basics: Turbomachinery Applications
Provides an overview of fluid dynamics principles crucial for turbomachinery design and analysis.
Viscous Fluid Dynamics: Reynolds Number and Flow Characteristics
Explores the impact of Reynolds number on fluid flow characteristics and similitude in experimental setups.
Fluid Mechanics: Foundations and Applications
Covers the foundations of fluid mechanics, focusing on flow problem descriptions and solutions.