| Boolean | useHomotopy (from BaseHomotopy) | false | |
| Modelica.Units.SI.MolarFlowRate[n,nSL] | Ndot_l_inter (from BaseHomotopy) | fill(0, n, nSL) | nominal molar flow across liquid phase boundary |
| Modelica.Units.SI.MolarFlowRate[n,nSV] | Ndot_v_inter (from BaseHomotopy) | fill(0, n, nSV) | nominal molar flow across vapour phase boundary |
| Modelica.Units.SI.HeatFlowRate[n] | Edot_l_inter (from BaseHomotopy) | fill(0, n) | nominal heat flow rate across liquid phase boundary |
| Modelica.Units.SI.HeatFlowRate[n] | Edot_v_inter (from BaseHomotopy) | fill(0, n) | nominal heat flow rate across vapour phase boundary |
| Modelica.Units.SI.Pressure | dp (from BaseHomotopy) | 0.1e5 | nominal pressure loss |
| Real[nS] | K (from BaseHomotopy) | fill(1, nS) | nominal equilibrium constant |
| Modelica.Units.SI.Density | rho_liq (from BaseHomotopy) | 1000 | nominal liquid density |
| Modelica.Units.SI.Density | rho_vap (from BaseHomotopy) | 1 | nominal vapour density |
| ThermalSeparation.Units.MolarEnthalpy | h_liq (from BaseHomotopy) | 2e3 | nominal liquid emthalpy |
| ThermalSeparation.Units.MolarEnthalpy | h_vap (from BaseHomotopy) | 1.5e4 | nominal vapour enthalpy |
| Boolean[6] | whichHomotopy | fill(false, 6) | |
| Boolean | bool_Ndot_inter | if not whichHomotopy[1] then false else true | true if homotopy is applied on molar flow rate across phase boundary |
| Boolean | bool_Edot_inter | if not whichHomotopy[2] then false else true | true if homotopy is applied on heat flow rate across phase boundary |
| Boolean | bool_dp | if not whichHomotopy[3] then false else true | true if homotopy is applied on pressure loss |
| Boolean | bool_K | if not whichHomotopy[4] then false else true | true is homotopy is applied on equilibrium constant |
| Boolean | bool_rho | if not whichHomotopy[5] then false else true | true is homotopy is applied on liquid and vapour density |
| Boolean | bool_h | if not whichHomotopy[6] then false else true | true is homotopy is applied on liquid and vapour enthalpy |