| Integer | figure (from ConductionIcons) | 1 | Index for Icon figure |
| Integer[2] | nVs | geometry.ns | |
| Integer[2] | ns (from Ts2D) | {1, 1} | Number of nodes in each dimesions {1,2} |
| Real | nParallel | 1 | Number of parallel components |
| Boolean | use_HeatTransfer | false | Use external heat transfer port |
| Boolean | use_dim1 | true | =false then conduction in dimension-1 is neglected |
| Boolean | use_dim2 | false | =false then conduction in dimension-2 is neglected |
| Integer | nFM_1 | if exposeState_a1 and exposeState_b1 then nVs[1] - 1 else if not exposeState_a1 and not exposeState_b1 then nVs[1] + 1 else nVs[1] | number of flow models |
| Integer | nFM_2 | if exposeState_a2 and exposeState_b2 then nVs[2] - 1 else if not exposeState_a2 and not exposeState_b2 then nVs[2] + 1 else nVs[2] | number of flow models |
| Initialization › Start Value: Temperature |
| SI.Temperature | T_a1_start (from Ts2D) | 273.15 | Temperature at port a1 |
| SI.Temperature | T_b1_start (from Ts2D) | T_a1_start | Temperature at port b1 |
| SI.Temperature | T_a2_start (from Ts2D) | 273.15 | Temperature at port a2 |
| SI.Temperature | T_b2_start (from Ts2D) | T_a2_start | Temperature at port b2 |
| SI.Temperature[ns[1],ns[2]] | Ts_start (from Ts2D) | fill((T_a1_start + T_b1_start + T_a2_start + T_b2_start)/4, ns[1], ns[2]) | Temperatures |
| Assumptions › Dynamics |
| Modelica.Fluid.Types.Dynamics | energyDynamics (from EnergyDynamics) | Modelica.Fluid.Types.Dynamics.DynamicFreeInitial | Formulation of energy balances |
| Advanced |
| Boolean | use_Density | false | =true to use uniform input thermal conductivity |
| Boolean | use_HeatCapacity | false | =true to use uniform input thermal conductivity |
| Boolean | use_Lambda | false | =true to use uniform input thermal conductivity |
| Advanced › Model Structure |
| Boolean | exposeState_a1 | true | =true, T is calculated at port_a1 else Q_flow |
| Boolean | exposeState_b1 | false | =true, T is calculated at port_b1 else Q_flow |
| Boolean | exposeState_a2 | true | =true, T is calculated at port_a2 else Q_flow |
| Boolean | exposeState_b2 | false | =true, T is calculated at port_b2 else Q_flow |