In this paper we determine the velocity, the energy, and estimate writhe and twist helicity contributions of vortex filaments in the shape of torus knots and unknots (as toroidal and poloidal coils) in a perfect fluid. Calculations are performed by numerical integration of the Biot-Savart law. Vortex complexity is parametrized by the winding number w given by the ratio of the number of meridian wraps to that of longitudinal wraps. We find that for w<1 vortex knots and toroidal coils move faster and carry more energy than a reference vortex ring of same size and circulation, whereas for w>1 knots and poloidal coils have approximately same speed and energy of the reference vortex ring. Helicity is dominated by writhe contributions. Finally, we confirm the stabilizing effect of the Biot-Savart law for all knots and unknots tested, found to be structurally stable over a distance of several diameters. Our results also apply to quantized vortices in superfluid H4 e. © 2010 The American Physical Society.

Maggioni, F., Alamri, S., Barenghi, C., Ricca, R. (2010). Velocity, energy, and helicity of vortex knots and unknots. PHYSICAL REVIEW E, STATISTICAL, NONLINEAR, AND SOFT MATTER PHYSICS, 82(2), 1-9 [10.1103/PhysRevE.82.026309].

Velocity, energy, and helicity of vortex knots and unknots

Ricca, RL
2010

Abstract

In this paper we determine the velocity, the energy, and estimate writhe and twist helicity contributions of vortex filaments in the shape of torus knots and unknots (as toroidal and poloidal coils) in a perfect fluid. Calculations are performed by numerical integration of the Biot-Savart law. Vortex complexity is parametrized by the winding number w given by the ratio of the number of meridian wraps to that of longitudinal wraps. We find that for w<1 vortex knots and toroidal coils move faster and carry more energy than a reference vortex ring of same size and circulation, whereas for w>1 knots and poloidal coils have approximately same speed and energy of the reference vortex ring. Helicity is dominated by writhe contributions. Finally, we confirm the stabilizing effect of the Biot-Savart law for all knots and unknots tested, found to be structurally stable over a distance of several diameters. Our results also apply to quantized vortices in superfluid H4 e. © 2010 The American Physical Society.
Articolo in rivista - Articolo scientifico
Condensed Matter Physics; Statistical and Nonlinear Physics; Statistics and Probability
English
2010
82
2
1
9
026309
open
Maggioni, F., Alamri, S., Barenghi, C., Ricca, R. (2010). Velocity, energy, and helicity of vortex knots and unknots. PHYSICAL REVIEW E, STATISTICAL, NONLINEAR, AND SOFT MATTER PHYSICS, 82(2), 1-9 [10.1103/PhysRevE.82.026309].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/192815
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