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Related lectures (31)
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Introduction to Free Convection: Governing Equations
Explores free convection, laminar flow boundary layer equations, and heat transfer principles.
Turbulence: Numerical Flow Simulation
Explores the challenges of turbulence, simple turbulent flows, and numerical simulation methods.
Laminar and Turbulent Flow
Covers laminar and turbulent flow, pressure losses, Reynolds number, Poiseuille flow, and friction in piping networks.
Pressure Drop in Closed-Flow Systems
Explores pressure drop in closed-flow systems, including minor losses and exercises on fluid transfer and pump power.
Incompressible Fluid Mechanics
Covers topics such as differential analysis, potential flow, 2D flows, superpositions, lift, and drag.
Stokes Equations: Low Reynolds Number Flow
Explores the application of Stokes equations to low Reynolds number flow and the dynamics of fluid flow.
Turbulence Concepts: Reynolds Decomposition and Closure Problem
Explores Reynolds decomposition, closure problem, and turbulence modeling challenges.
Incompressible Fluid Mechanics: Differential Analysis
Covers mass and momentum conservation, Navier-Stokes equations, and analytical methods in incompressible fluid mechanics.
Thermal Instabilities: Rayleigh-Benard Analysis
Explores fluid instabilities, focusing on Rayleigh-Benard analysis and key concepts like buoyancy and temperature gradients.
Velocity Boundary Layer Equations
Focuses on velocity boundary layer equations in laminar flow and covers mass and momentum conservation, Navier-Stokes equations, and the Reynolds number.