Chemical fronts in Hele-Shaw cells: Linear stability analysis based on the three-dimensional Stokes equations
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Publication:3556378
DOI10.1063/1.1536972zbMath1185.76109OpenAlexW1980283307MaRDI QIDQ3556378
Publication date: 22 April 2010
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://semanticscholar.org/paper/4bd5c5c167baa1b1a49101c8917b42ba4ba82b88
vorticesPoiseuille flowflow instabilityflow through porous mediastratified flowchemically reactive flow
Related Items (7)
Miscible displacements in Hele-Shaw cells: three-dimensional Navier–Stokes simulations ⋮ Instability of a vertical chemical front: Effect of viscosity and density varying with concentration ⋮ Miscible density fingering of chemical fronts in porous media: Nonlinear simulations ⋮ Fingering instabilities of exothermic reaction-diffusion fronts in porous media ⋮ Rayleigh--Taylor instability of pulled versus pushed fronts ⋮ On the classification of buoyancy-driven chemo-hydrodynamic instabilities of chemical fronts ⋮ Influence of a simple magnetic bar on buoyancy-driven fingering of traveling autocatalytic reaction fronts
Cites Work
- The effect of convection on a propagating front with a liquid product: Comparison of theory and experiments
- Wavelength selection of fingering instability inside Hele–Shaw cells
- Density-driven unstable flows of miscible fluids in a Hele-Shaw cell
- Density-driven instabilities of miscible fluids in a Hele-Shaw cell: linear stability analysis of the three-dimensional Stokes equations
- Hydrodynamic stability of a polymerization front
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