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The generation of two-dimensional vortices by transverse oscillation of a soap film

Journal Article · · Physics of Fluids (1994)
DOI:https://doi.org/10.1063/1.869571· OSTI ID:565746
; ; ;  [1];  [2]
  1. Institute of Applied Physics, Russian Academy of Science, 46 Uljanov Str., 603600 Nizhny Novgorod (Russia)
  2. Department of Mechanical Engineering, University of Colorado, Boulder, Colorado 80309 (United States)

An experimental investigation of the dynamics of horizontal soap films stretched over circular or square boundaries undergoing periodic transverse oscillations at frequencies in the range 20{endash}200 Hz is reported. Concomitant with modes of transverse flexural oscillations, it was observed that two-dimensional vortices in the plane of the film are excited. The vortices may be either (i) large, scaling with the size of the cavity or (ii) small, localized at a wavelength or half-wavelength of the membrane modes. In the experiments a stable generation of one, two, {hor_ellipsis}, ten pairs of counter-rotating vortices were observed in finite regions of amplitude-frequency parameter space. The circulation strength of vortices in a given vortex pattern increases with increasing external forcing and with decreasing soap film thickness. A theoretical model based on the wave-boundary interaction of excited Marangoni waves reveals a vorticity generation mechanism active in vibrating soap films. This model shows that vorticity is generated throughout the entire liquid volume by viscous diffusion, and qualitatively reproduces many steady vortex patterns observed in the experiment. However, the model cannot explain the existence of the sometimes intense vortices observed far from the film boundary that do not appear to be generated by diffusive processes. {copyright} {ital 1998 American Institute of Physics.}

OSTI ID:
565746
Journal Information:
Physics of Fluids (1994), Journal Name: Physics of Fluids (1994) Journal Issue: 2 Vol. 10; ISSN PHFLE6; ISSN 1070-6631
Country of Publication:
United States
Language:
English

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