On Marangoni convective patterns driven by an exothermic chemical reaction in two-layer systems
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Publication:3554341
DOI10.1063/1.1648641zbMath1186.76076OpenAlexW2057794882MaRDI QIDQ3554341
Publication date: 22 April 2010
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://dipot.ulb.ac.be/dspace/bitstream/2013/133915/1/2004dewit32.pdf
Navier-Stokes equationsconvectionpattern formationreaction-diffusion systemssurface tensionhydrodynamicsnonlinear dynamical systemsflow simulationnumerical analysisflow instabilitychemically reactive flow
Related Items (8)
Exotic dynamics of bimolecular reaction-diffusion fronts in immiscible systems ⋮ Competitive autocatalytic reactions in chaotic flows with diffusion: Prediction using finite-time Lyapunov exponents ⋮ Thermogravitational mechanism of alignment of the front of chemoconvection patterns with an exothermic chemical reaction ⋮ Complex Patterns and Elementary Structures of Solutal Marangoni Convection: Experimental and Numerical Studies ⋮ Experimental characterization of buoyancy- and surface tension-driven convection during the drying of a polymer solution ⋮ Marangoni instability triggered by selective evaporation of a binary liquid inside a Hele-Shaw cell ⋮ Extended classification of the buoyancy-driven flows induced by a neutralization reaction in miscible fluids. Part 2. Theoretical study ⋮ Dynamics of a two-layer flow with an interfacial heat source/sink: viscosity stratification
Cites Work
- Chemically driven nonlinear waves and oscillations at an oil-water interface
- Thermocapillary convection in two-layer systems
- Hydrodynamic Stability Without Eigenvalues
- On convection cells induced by surface tension
- Chemical pattern formation driven by a neutralization reaction. I. Mechanism and basic features
- Stability of miscible displacements in porous media: Rectilinear flow
- Drops, liquid layers and the Marangoni effect
- Thermocapillary flow in a Hele-Shaw cell
- Effect of interfacial tension on propagating polymerization fronts
- Surface tension and buoyancy effects in cellular convection
- Nonlinear investigation of anti-convection and Rayleigh-Bénard convection in systems with heat release at the interface
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