Numerical simulation of gas migration through engineered and geological barriers for a deep repository for radioactive waste
DOI10.1007/s00791-013-0196-1zbMath1388.86002OpenAlexW1993731193MaRDI QIDQ1685121
Brahim Amaziane, Mustapha El Ossmani, Mladen Jurak
Publication date: 13 December 2017
Published in: Computing and Visualization in Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00791-013-0196-1
two-phase flowfinite volumeheterogeneous porous mediaimmiscible compressiblenuclear wastehydrogen migrationvertex-centred
Fluid-solid interactions (including aero- and hydro-elasticity, porosity, etc.) (74F10) Flows in porous media; filtration; seepage (76S05) Finite volume methods applied to problems in fluid mechanics (76M12) Computational methods for problems pertaining to geophysics (86-08) Liquid-gas two-phase flows, bubbly flows (76T10) Compressibility effects in hydrodynamic stability (76E19)
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- Finite volume approximation of a diffusion-dissolution model and application to nuclear waste storage
- Two-phase, partially miscible flow and transport modeling in porous media; application to gas migration in a nuclear waste repository
- Introduction to modeling of transport phenomena in porous media
- Reactive transport benchmark of MoMaS
- A two level scaling-up method for multiphase flow in porous media; numerical validation and comparison with other methods
- Numerical modeling of two-phase hysteresis combined with an interface condition for heterogeneous porous media
- Finite volume scheme for two-phase flows in heterogeneous porous media involving capillary pressure discontinuities
- Computational Methods for Multiphase Flows in Porous Media
- Numerical Approximation of a Two-phase Flow Problem in a Porous Medium with Discontinuous Capillary Forces
- Node-centered finite volume discretizations for the numerical simulation of multiphase flow in heterogeneous porous media
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