Fjords in viscous fingering: Selection of width and opening angle
arXiv:nlin/0510049 · doi:10.1103/PhysRevE.74.015201
Abstract
Our experiments on viscous fingering of air into oil contained between closely spaced plates reveal two selection rules for the fjords of oil that separate fingers of air. (Fjords are the building blocks of solutions of the zero-surface-tension Laplacian growth equation.) Experiments in rectangular and circular geometries yield fjords with base widths 1/2 lambda_c, where lambda_c is the most unstable wavelength from a linear stability analysis. Further, fjords open at an angle of 8.0 degrees plus or minus 1.0 degree. These selection rules hold for a wide range of pumping rates and fjord lengths, widths, and directions.
4 pages, 4 figures. The APS version of this article is available at http://link.aps.org/abstract/PRE/v74/e015201
References in corpus (1)
Cited by in corpus (6)
- Stability Analysis of a Hybrid Cellular Automaton Model of Cell Colony Growth
- Harmonic moment dynamics in Laplacian growth
- Random Matrices in 2D, Laplacian Growth and Operator Theory
- Compression-driven viscous fingering in a radial Hele-Shaw cell
- Quantized Laplacian growth, III: On conformal field theories of Laplacian growth
- Quantized Laplacian growth, II: 1D hydrodynamics of the Loewner density