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Related lectures (30)
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Incompressible Fluid Mechanics
Covers topics such as differential analysis, potential flow, 2D flows, superpositions, lift, and drag.
Stagnation Streamline Analysis
Discusses the analysis of stagnation streamline in a half-body flow with uniform conditions.
Basic Potential Flows: Sources, Sinks, and Vortices
Covers the concept of basic potential flows, including sources, sinks, and vortices.
1D Flows: Mach Function of Area
Explores 1D flows, focusing on area relationships, mass flow, and Mach numbers.
Rayleigh Taylor Instability: Analysis and Equations
Explores Rayleigh Taylor instability, incompressible equations, and boundary conditions.
Deformations and Circulation
Covers deformations, rotation, and circulation in closed curves, as well as vorticity generation in fluid flow.
Characteristics: Introduction
Introduces the characteristics of supersonic flows and the conditions for considering irrotational flows.
Incompressible Fluid Mechanics: Differential Analysis
Covers mass and momentum conservation, Navier-Stokes equations, and analytical methods in incompressible fluid mechanics.
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Kalman-Hauad-Morning Relation
Delves into deriving the Kalman-Hauad-Morning relation in stationary turbulence, emphasizing homogeneity and isotropy assumptions, and culminates in the common Howard-Mohnen relation.