Two-phase, two-component Darcy flow For a detailed model description see porousmediumflow/2p2c/model.hh. More...
Two-phase, two-component Darcy flow For a detailed model description see porousmediumflow/2p2c/model.hh.
Modules | |
Sequential | |
Sequential two-phase, two-component Darcy flow. | |
Files | |
file | porousmediumflow/2p2c/model.hh |
Adaption of the fully implicit scheme to the two-phase two-component fully implicit model. | |
file | porousmediumflow/2p2c/volumevariables.hh |
Contains the quantities which are constant within a finite volume in the two-phase two-component model. | |
Classes | |
class | Dumux::TwoPTwoCVolumeVariablesBase< Traits, Impl > |
Contains the quantities which are constant within a finite volume in the two-phase two-component model. This is the base class for a 2p2c model with and without chemical nonequilibrium. More... | |
class | Dumux::TwoPTwoCVolumeVariablesImplementation< Traits, false, useConstraintSolver > |
Contains the quantities which are constant within a finite volume in the two-phase two-component model. Specialization for chemical equilibrium. More... | |
class | Dumux::TwoPTwoCVolumeVariablesImplementation< Traits, true, useConstraintSolver > |
Contains the quantities which are constant within a finite volume in the two-phase two-component model. Specialization for chemical non-equilibrium. The equilibrium mole fraction is calculated using Henry's and Raoult's law. More... | |
Typedefs | |
template<class Traits , bool useConstraintSolver = true> | |
using | Dumux::TwoPTwoCVolumeVariables = TwoPTwoCVolumeVariablesImplementation< Traits, Traits::ModelTraits::enableChemicalNonEquilibrium(), useConstraintSolver > |
Contains the quantities which are constant within a finite volume in the two-phase two-component model. More... | |
using Dumux::TwoPTwoCVolumeVariables = typedef TwoPTwoCVolumeVariablesImplementation<Traits, Traits::ModelTraits::enableChemicalNonEquilibrium(), useConstraintSolver> |
Contains the quantities which are constant within a finite volume in the two-phase two-component model.