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L3: The Navier-Stokes equations II: Topology Prof. Sauro Succi
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Topological Fluid Dynamics
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Deformation/Strain rate/Rotation *These are inverse time scales=internal bootstrap frequencies* The deformation tensor governs/encodes the local flow topology
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Deformation: kinematics Deformation
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Differential forms
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Deformation/Strain rate/Rotation *These are inverse time scales=internal bootstrap frequencies* Strain rate: shear dissipation Compression: bulk dissipation Rotation: No Dissipation
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Whiteboard Example: Compute S,D,Omega, div for Couette, Poiseuille, Rigid rotation, Irrotational vortex, Elongational (torture) flow
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Radial Flow
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Vortex Flow
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Elongational Flow
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Velocity-Vorticity Degree of local rotation Eliminates pressure Useful for nearly-inviscis flows
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Rotational/Irrotational
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Rotational/Potential Flow Potential ~ Inviscid Potential & Incompressible Analytic function: very useful for 2D low-viscous hydrodynamics
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Kelvin theorem
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Turbo-jungle vorticity
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What’s vorticity good for? Pressure-free! Vortex stretching: Take curl of both sides and use identity To obtain:
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Enstrophy Vorticity Stretch: Finite-time blow-up? 2d Beltrami flows:
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What’s vorticity good for? Pressure-free! Vortex Collection: Long-range (electrostatic) interactions
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Helicity Swirl motion, Dynamo 1d 2d Beltrami flows:
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2d: Vorticity-Streamfunction Two-dimensional Potential-->Irrotational: Built-in incompressibility:
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Potential Flow: 2D Conformal mapping:
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Body-fitted coordinates
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2d: Enstrophy conserved Vortex stretching identically zero: Enstrophy is conserved:
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2d turbulence: Vorticity-Stream Two-dimensional: spectral methods Nonlinear depletion: coherent structures (vortices)
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Coherent structures Non-linear depletion Cascade blocking; Long-lived metastable states Enstrophy cascade: REGULAR!
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Ideal 2d: Hamiltonian Symplectic dynamics: Borrow a lot from particle dynamics! Hamiltonian streaming + vortex mergers/breakup
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Enstrophy: inverse cascade Cascade blocking; Long-lived metastable states Enstrophy cascade: REGULAR! Energy cascade: SINGULAR
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End of Lecture
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