modelRealSeparated

Separation | Real | outlet states depending on filling Level | All geometries

Extends from ClaRa.Basics.ControlVolumes.Fundamentals.SpacialDistribution.RealPhases (The phases are NOT in ideal thermodynamic equilibrium), ClaRa.Basics.Icons.RealSeparation, ClaRa_Obsolete.Basics.Icons.Obsolete_v1_1 (This model will be not longer supported than Version 1.3!).

Parameters

TypeNameDefaultDescription
BooleanuseHomotopy (from RealPhases)True, if homotopy method is used during initialisation
ClaRa.Basics.Units.Lengthradius_flange0.05Flange radius
RealabsorbInflow1absorption of incoming mass flow to the zones 1: perfect in the allocated zone, 0: perfect according to steam quality
Modelica.Blocks.Types.SmoothnesssmoothnessModelica.Blocks.Types.Smoothness.LinearSegments|Expert Settings|Shape interpretation|Smoothness of table interpolation
ClaRa.Basics.Units.Length[geo.N_inlet]z_max_in{min(geo.z_in[i] + radius_flange, geo.height_fill) for i in 1:geo.N_inlet}Upper edges of inlet flanges
ClaRa.Basics.Units.Length[geo.N_inlet]z_min_in{max(1e-3, geo.z_in[i] - radius_flange) for i in 1:geo.N_inlet}Lower edges of inlet flanges
ClaRa.Basics.Units.Length[geo.N_outlet]z_max_out{min(geo.z_out[i] + radius_flange, geo.height_fill) for i in 1:geo.N_outlet}Upper edges of outlet flanges
ClaRa.Basics.Units.Length[geo.N_outlet]z_min_out{max(1e-3, geo.z_out[i] - radius_flange) for i in 1:geo.N_outlet}Lower edges of outlet flanges
Initialisation
Reallevel_rel_start (from RealPhases)0.5Start value for relative filling level (set by applying control volume)

Components

TypeNameDefaultDescription
ClaRa.Basics.Records.IComVLE_L3_NPortiCom (from RealPhases)Internal communication record
ClaRa.Basics.ControlVolumes.Fundamentals.Geometry.GenericGeometrygeo (from RealPhases)Geometry record
Units.Pressure[geo.N_inlet]Delta_p_geo_in (from RealPhases)Geodetic pressure difference to inlets
Units.Pressure[geo.N_outlet]Delta_p_geo_out (from RealPhases)Geodetic pressure difference to outlets
Units.MassFraction[geo.N_inlet]zoneAlloc_in (from RealPhases)Allocation of inlet mass flows to zones |1:liq|2:vap|
Units.MassFraction[geo.N_outlet]zoneAlloc_out (from RealPhases)Allocation of outlet mass flows to zones |1:liq|2:vap|
Units.Lengthlevel_abs (from RealPhases)Absolute filling absLevel
Reallevel_rel (from RealPhases)Relative filling absLevel
ClaRa.Basics.Units.MassFlowRate[geo.N_inlet]m_flow_inliq (from RealPhases)Mass flow passing from inlet to zone 1 and vice versa
ClaRa.Basics.Units.MassFlowRate[geo.N_inlet]m_flow_invap (from RealPhases)Mass flow passing from inlet to zone 2 and vice versa
ClaRa.Basics.Units.MassFlowRate[geo.N_outlet]m_flow_outliq (from RealPhases)Mass flow passing from outlet to zone 1 and vice versa
ClaRa.Basics.Units.MassFlowRate[geo.N_outlet]m_flow_outvap (from RealPhases)Mass flow passing from outlet to zone 2 and vice versa
ClaRa.Basics.Units.EnthalpyMassSpecific[geo.N_inlet]H_flow_inliq (from RealPhases)Enthalpy flow passing from inlet to zone 1 and vice versa
ClaRa.Basics.Units.EnthalpyMassSpecific[geo.N_inlet]H_flow_invap (from RealPhases)Enthalpy flow passing from inlet to zone 2 and vice versa
ClaRa.Basics.Units.EnthalpyMassSpecific[geo.N_outlet]H_flow_outliq (from RealPhases)Enthalpy flow passing from outlet to zone 1 and vice versa
ClaRa.Basics.Units.EnthalpyMassSpecific[geo.N_outlet]H_flow_outvap (from RealPhases)Enthalpy flow passing from outlet to zone 2 and vice versa
ClaRa.Basics.Choices.InitinitType
ClaRa.Basics.Units.DensityMassSpecific[iCom.N_cv]rho
ClaRa.Basics.Units.MassFraction[geo.N_inlet]steamQuality_in
ClaRa.Basics.Units.MassFraction[geo.N_outlet]steamQuality_out
ClaRa.Basics.Units.AreaA_hor_actActual horizontal surface size