Dispersion effects in porous medium gravity currents experiencing local drainage
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Publication:6067870
DOI10.1017/jfm.2023.805OpenAlexW4388671385MaRDI QIDQ6067870
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Publication date: 17 November 2023
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/jfm.2023.805
Darcy lawexplicit finite difference schemebuoyancy equationdiscrete fissure leakagefissure permeabilitylaterally extensive porous medium
Hydrology, hydrography, oceanography (86A05) Flows in porous media; filtration; seepage (76S05) Finite difference methods applied to problems in fluid mechanics (76M20)
Cites Work
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- Two-dimensional viscous gravity currents flowing over a deep porous medium
- On the slow draining of a gravity current moving through a layered permeable medium
- Filling box flows in porous media
- Stratified gravity currents in porous media
- Gravity currents of carbon dioxide with residual gas trapping in a two-layered porous medium
- Turbulent entrainment in stratified flows
- Axisymmetric gravity currents in a porous medium
- The effect of a fissure on storage in a porous medium
- The effect of vertically varying permeability on tracer dispersion
- Gravity-driven flows in porous layers
- Isolated buoyant convection in a two-layered porous medium with an inclined permeability jump
- Leakage dynamics of fault zones: experimental and analytical study with application to CO2 storage
- Dispersive entrainment into gravity currents in porous media
- Mixing and entrainment are suppressed in inclined gravity currents
- Influence of heterogeneity on second-kind self-similar solutions for viscous gravity currents
- Flow and Transport in Porous Media and Fractured Rock
- The evolution of miscible gravity currents in horizontal porous layers
- Gravity currents in a porous medium at an inclined plane
- Gravity currents over fractured substrates in a porous medium
- Mixing at the interface between two fluids in porous media: a boundary-layer solution
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