On Lagrangian and vortex-surface fields for flows with Taylor–Green and Kida–Pelz initial conditions
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Publication:3075787
DOI10.1017/S0022112010003125zbMath1205.76069OpenAlexW2140645750MaRDI QIDQ3075787
Publication date: 17 February 2011
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/s0022112010003125
Related Items (21)
Evolution of vortex-surface fields in viscous Taylor–Green and Kida–Pelz flows ⋮ Approximate streamsurfaces for flow visualization ⋮ Identification, characterization and evolution of non-local quasi-Lagrangian structures in turbulence ⋮ The boundary-constraint method for constructing vortex-surface fields ⋮ Role of internal structures within a vortex in helicity dynamics ⋮ Neural vortex method: from finite Lagrangian particles to infinite dimensional Eulerian dynamics ⋮ Effects of twist on the evolution of knotted magnetic flux tubes ⋮ Study of the 3D Euler equations using Clebsch potentials: dual mechanisms for geometric depletion ⋮ Tracking vortex surfaces frozen in the virtual velocity in non-ideal flows ⋮ Mechanism and modelling of the secondary baroclinic vorticity in the Richtmyer–Meshkov instability ⋮ Lagrangian Identification of Coherent Structures in Wall-Bounded Flows ⋮ On the Double-Step PIV Algorithm of Wall-Bounded Flows ⋮ Universal mechanism for saturation of vorticity growth in fully developed fluid turbulence ⋮ Evolution of material surfaces in the temporal transition in channel flow ⋮ Effects of the secondary baroclinic vorticity on the energy cascade in the Richtmyer–Meshkov instability ⋮ Magnetic knot cascade via the stepwise reconnection of helical flux tubes ⋮ Vortex reconnection in the late transition in channel flow ⋮ Identifying the tangle of vortex tubes in homogeneous isotropic turbulence ⋮ Image-based modelling of the skin-friction coefficient in compressible boundary-layer transition ⋮ Estimating thrust from shedding vortex surfaces in the wake of a flapping plate ⋮ Tracking and analysis of interfaces and flow structures in multiphase flows
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