English

Saffman-Taylor fingers with kinetic undercooling

Fluid Dynamics 2015-05-11 v1

Abstract

The mathematical model of a steadily propagating Saffman-Taylor finger in a Hele-Shaw channel has applications to two-dimensional interacting streamer discharges which are aligned in a periodic array. In the streamer context, the relevant regularisation on the interface is not provided by surface tension, but instead has been postulated to involve a mechanism equivalent to kinetic undercooling, which acts to penalise high velocities and prevent blow-up of the unregularised solution. Previous asymptotic results for the Hele-Shaw finger problem with kinetic undercooling suggest that for a given value of the kinetic undercooling parameter, there is a discrete set of possible finger shapes, each analytic at the nose and occupying a different fraction of the channel width. In the limit in which the kinetic undercooling parameter vanishes, the fraction for each family approaches 1/2, suggesting that this 'selection' of 1/2 by kinetic undercooling is qualitatively similar to the well-known analogue with surface tension. We treat the numerical problem of computing these Saffman-Taylor fingers with kinetic undercooling, which turns out to be more subtle than the analogue with surface tension, since kinetic undercooling permits finger shapes which are corner-free but not analytic. We provide numerical evidence for the selection mechanism by setting up a problem with both kinetic undercooling and surface tension, and numerically taking the limit that the surface tension vanishes.

Cite

@article{arxiv.1502.02334,
  title  = {Saffman-Taylor fingers with kinetic undercooling},
  author = {Bennett P. J. Gardiner and Scott W. McCue and Michael C. Dallaston and Timothy J. Moroney},
  journal= {arXiv preprint arXiv:1502.02334},
  year   = {2015}
}

Comments

10 pages, 6 figures, accepted for publication by Physical Review E

R2 v1 2026-06-22T08:25:03.577Z