![]() |
OGS
|
Linear kinematics poro-mechanical/biphasic (fluid-solid mixture) model.
The mixture momentum balance and the mixture mass balance are solved under fully saturated conditions.
Note: This list has been automatically extracted from OGS's benchmark tests (ctests). Therefore it might not be exhaustive, but it should give users a good overview about which properties they can/have to use with this process. Probably most of the properties occurring in this list are mandatory.
The list might contain different property <type>s for some property <name> to illustrate different possibilities the users have.
<type> [case] AqueousLiquid<type> [case] Gas<type> [case] Solid<name> density<type> [case] Constant<name> density<type> [case] IdealGasLaw<name> density<type> [case] Linear<name> density<type> [case] Parameter<name> molar_mass<type> [case] Constant<name> specific_heat_capacity<type> [case] Constant<name> thermal_conductivity<type> [case] Constant<name> thermal_expansivity<type> [case] Constant<name> viscosity<type> [case] Constant<name> viscosity<type> [case] Parameter<name> biot_coefficient<type> [case] Constant<name> bishops_effective_stress<type> [case] BishopsPowerLaw<name> permeability<type> [case] Constant<name> permeability<type> [case] EmbeddedFracturePermeability<name> permeability<type> [case] OrthotropicEmbeddedFracturePermeability<name> permeability<type> [case] PermeabilityMohrCoulombFailureIndexModel<name> permeability<type> [case] StrainDependentPermeability<name> porosity<type> [case] Constant<name> reference_temperature<type> [case] Constant<name> relative_permeability<type> [case] RelativePermeabilityVanGenuchten<name> saturation<type> [case] SaturationVanGenuchten<name> thermal_conductivity<type> [case] EffectiveThermalConductivityPorosityMixingNo additional info.