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Spatially developing turbulent boundary layer on a flat plate

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arxiv 1210.3881 v1 pith:VOXMGVW7 submitted 2012-10-15 physics.flu-dyn

Spatially developing turbulent boundary layer on a flat plate

classification physics.flu-dyn
keywords boundarylayerturbulentdevelopingfluidplatestationarycoherent
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This fluid dynamics video submitted to the Gallery of Fluid motion shows a turbulent boundary layer developing under a 5 metre-long flat plate towed through water. A stationary imaging system provides a unique view of the developing boundary layer as it would form over the hull of a ship or fuselage of an aircraft. The towed plate permits visualisation of the zero-pressure-gradient turbulent boundary layer as it develops from the trip to a high Reynolds number state ($Re_\tau \approx 3000$). An evolving large-scale coherent structure will appear almost stationary in this frame of reference. The visualisations provide an unique view of the evolution of fundamental processes in the boundary layer (such as interfacial bulging, entrainment, vortical motions, etc.). In the more traditional laboratory frame of reference, in which fluid passes over a stationary body, it is difficult to observe the full evolution and lifetime of turbulent coherent structures. An equivalent experiment in a wind/water-tunnel would require a camera and laser that moves with the flow, effectively `chasing' eddies as they advect downstream.

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  1. An SO(3) Gauge Theory of Turbulence with Spontaneous Symmetry Breaking

    physics.flu-dyn 2026-07 conditional novelty 7.0

    Isotropic turbulence is cast as the SO(3) Georgi–Glashow model with L=r×u as gauge connection and ur as Higgs, so worms are BPS monopoles and the cascade sits in a massless U(1) sector.