PMID: 12786535Jun 6, 2003Paper

Decay of counterflow He II turbulence in a finite channel: possibility of missing links between classical and quantum turbulence

Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
L SkrbekF Soukup

Abstract

Decay of He II counterflow turbulence generated by applying a heat pulse to the closed end of a circular channel is investigated using second sound attenuation. Several orders of magnitude of decaying vortex line density display various regimes, starting with the inverse time decay predicted by Vinen towards distinct classical t(-3/2) power law occurring after saturation of the energy containing length scale by the size of the channel. The decaying counterflow turbulence displays a surprisingly close resemblance to recently reported decaying grid turbulence in He II, and both of them appear closely linked to classical grid generated turbulence.

References

Aug 1, 1988·Physical Review. B, Condensed Matter·K W Schwarz
Oct 1, 1991·Physical Review. B, Condensed Matter·K W Schwarz, J R Rozen
Apr 8, 1991·Physical Review Letters·K W Schwarz, J R Rozen
Oct 18, 1993·Physical Review Letters·M R SmithW F Vinen
Sep 27, 2000·Physical Review Letters·L SkrbekR J Donnelly
Feb 15, 2001·Physical Review Letters·S N FisherG R Pickett

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Citations

Apr 8, 2014·Proceedings of the National Academy of Sciences of the United States of America·Wei GuoSteven W Van Sciver
Apr 8, 2014·Proceedings of the National Academy of Sciences of the United States of America·Carlo F BarenghiKatepalli R Sreenivasan
Oct 3, 2015·The Review of Scientific Instruments·J GaoW F Vinen
Jul 13, 2004·Physical Review Letters·H A NicholP V E McClintock
Dec 17, 2004·Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics·H A NicholP V E McClintock
Oct 10, 2006·Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics·C F BarenghiL Skrbek
Oct 13, 2007·Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics·T V ChagovetsL Skrbek
Jun 4, 2008·Physical Review Letters·T V Chagovets, L Skrbek
Nov 13, 2008·Physical Review Letters·M S PaolettiD P Lathrop

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