Electric-field-induced turbulent energy cascade in an oil-in-oil emulsion
arXiv:1412.3513 · doi:10.1039/C5SM02316E
Abstract
We observe electro-hydrodynamically driven turbulent flows at low Reynolds numbers in a two-fluid emulsion consisting of micron-scale droplets. In the presence of electric fields, the droplets produce interacting hydrodynamic flows which result in a dynamical organization at a spatial scale much larger than the size of the individual droplets. We characterize the dynamics associated with these structures by both video imaging and a simultaneous, in situ, measurement of the time variation of the bulk Reynolds stress with a rheometer. The results display scale invariance in the energy spectra in both space and time.
4 pages, 5 figures
References in corpus (3)
Cited by in corpus (4)
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- Anomalous dynamics in tracer-particle motions in an electrohydrodynamically driven oil-in-oil system