COLLISION OF QUANTIZED VORTICES IN SUPERFLUID-HELIUM AND EFFECT OF APPLIED SUPERFLOW
Citation
M. Tsubota et S. Maekawa, COLLISION OF QUANTIZED VORTICES IN SUPERFLUID-HELIUM AND EFFECT OF APPLIED SUPERFLOW, JSME international journal. Series B, fluids and thermal engineering, 38(2), 1995, pp. 295-299
SICI code
1340-8054(1995)38:2<295:COQVIS>2.0.ZU;2-5
Abstract
The turbulent state of superfluid helium at very low temperatures pres
ents some important and unresolved problems. The turbulent state has a
dense tangle of quantized vortex filaments that are characteristic of
superfluid. Little is known, however, about their dynamics, particula
rly, interactive motion. The present paper studies numerically three-d
imensional dynamics of two interacting Vortex filaments. The equations
of motion and the method of numerical calculation follow those of Sch
warz. Two identical vortex rings which are initially placed far apart
proceed abreast toward the same direction. They gradually become close
due to their interaction, then suddenly collide. The critical distanc
e where the collision occurs is determined by the competition between
the local self-induced field of one ring and the nonlocal field from t
he partner. The critical distance is greatly influenced by an applied
superflow field.