Substrate design or reconstruction from free surface data for thin film flows
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Publication:5303971
DOI10.1063/1.2939404zbMath1182.76678OpenAlexW2007362624WikidataQ107613054 ScholiaQ107613054MaRDI QIDQ5303971
Publication date: 18 March 2010
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.2939404
Related Items (12)
Inverse problems in free surface flows: a review ⋮ Process parameter identification in thin film flows driven by a stretching surface ⋮ Steady solution and spatial stability of gravity-driven thin-film flow: reconstruction of an uneven slippery bottom substrate ⋮ Bottom reconstruction in thin-film flow over topography: Steady solution and linear stability ⋮ The inverse problem in creeping film flows ⋮ A direct solution approach to the inverse shallow-water problem ⋮ A NOTE ON APPROXIMATE BENCHMARK SOLUTIONS FOR VISCOUS TWO-LAYER FLOWS ⋮ Beating capillarity in thin film flows ⋮ Flow domain identification from free surface velocity in thin inertial films ⋮ Stabilization of thin liquid films flowing over locally heated surfaces via substrate topography ⋮ SURFACE TEMPERATURE RECONSTRUCTION BASED ON THE THERMOCAPILLARY EFFECT ⋮ One-dimensional bathymetry based on velocity measurements
Uses Software
Cites Work
- Computing three-dimensional thin film flows including contact lines.
- Steady free-surface thin film flows over topography
- Free surface Stokes flow over topography
- Optimal leveling of flow over one-dimensional topography by Marangoni stresses
- Gravity-driven flows of viscous liquids over two-dimensional topographies
- Gravity-driven flow of continuous thin liquid films on non-porous substrates with topography
- Electrified viscous thin film flow over topography
- Film flow down an inclined plane over a three-dimensional obstacle
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