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ME-344: Incompressible fluid mechanics
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Lectures in this course (79)
Newton's 2nd Law: Fluid Dynamics
Discusses Newton's 2nd Law in fluid dynamics and incompressible Newtonian fluids.
Inviscid Flow Approximations
Discusses approximations in incompressible, unsteady, and inviscid flow, lift, drag, viscosity, and fluid element deformation.
Deformations and Circulation
Covers deformations, rotation, and circulation in closed curves, as well as vorticity generation in fluid flow.
Untitled
Velocity Potential and Momentum Balance
Discusses velocity potential, momentum balance, and solution strategies for incompressible flows.
2D Potential Flows: Streamlines and Equipotential Lines
Covers the fundamentals of 2D potential flows, focusing on streamlines and equipotential lines.
Basic Potential Flows: Sources, Sinks, and Vortices
Covers the concept of basic potential flows, including sources, sinks, and vortices.
Stagnation Streamline Analysis
Discusses the analysis of stagnation streamline in a half-body flow with uniform conditions.
Potential Flows: Doublet and Cylinder Surface
Covers potential flows, doublet, cylinder surface, stagnation points, pressure calculations, and lift creation.
Aerodynamics: Lift on Airfoils
Discusses lift on airfoils in potential flow and explains how airplanes generate lift.
Laminar Flow: Shear between Parallel Plates
Explores laminar shear flow between parallel plates for incompressible fluids.
Steady State Solutions: Poiseuille Flow
Covers the steady state solutions for Poiseuille flow and different flow scenarios.
Boundary Layer Concepts
Explores boundary layer concepts, viscosity impact, drag and lift forces, and dimensional pipe flow analysis.
Equation for the Pressure Field
Explains the equation for the pressure field in fluid mechanics and the concept of neglecting shearing forces.
Pressure Calculation and Forces on Submerged Surfaces
Explains pressure calculation, manometry, and forces on submerged surfaces, emphasizing the importance of understanding centroids and resultant forces.
Hydrostatic Forces: Recap and Applications
Covers hydrostatic forces, forces on submerged surfaces, and centroids.
Fluid Forces: Surface and Buoyancy
Covers fluid forces on surfaces, Archimedes' principle, and Bernoulli's equation.
Newton's Laws: Applications in Fluid Mechanics
Explores the application of Newton's laws in fluid mechanics, analyzing forces and accelerations in fluid flow.
Applications of Bernoulli's Equation
Explores practical applications of Bernoulli's equation in fluid dynamics, including measuring speed in aircraft and analyzing flow rates in pipes.
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