modelGenericHeatGeneration

Extends from PartialInternalHeatGeneration.

Parameters

TypeNameDefaultDescription
Internal Interface
Integer[3]nVs (from PartialInternalHeatGeneration){1, 1, 1}Number of discrete volumes

Components

TypeNameDefaultDescription
Material.ThermodynamicState[nVs[1],nVs[2],nVs[3]]states (from PartialInternalHeatGeneration)Volume thermodynamic state
SI.Volume[nVs[1],nVs[2],nVs[3]]Vs (from PartialInternalHeatGeneration)Volumes
SI.Area[nVs[1] + 1,nVs[2],nVs[3]]crossAreas_1 (from PartialInternalHeatGeneration)Volume cross sectional area
SI.Area[nVs[1],nVs[2] + 1,nVs[3]]crossAreas_2 (from PartialInternalHeatGeneration)Volume cross sectional area
SI.Area[nVs[1],nVs[2],nVs[3] + 1]crossAreas_3 (from PartialInternalHeatGeneration)Volume cross sectional area
SI.Length[nVs[1],nVs[2],nVs[3]]lengths_1 (from PartialInternalHeatGeneration)Volume length
SI.Length[nVs[1],nVs[2],nVs[3]]lengths_2 (from PartialInternalHeatGeneration)Volume length
SI.Length[nVs[1],nVs[2],nVs[3]]lengths_3 (from PartialInternalHeatGeneration)Volume length
SI.HeatFlowRate[nVs[1],nVs[2],nVs[3]]Q_flows (from PartialInternalHeatGeneration)Internal heat generated
SI.HeatFlowRateQ_gen0Per volume heat generation
SI.HeatFlowRate[nVs[1],nVs[2],nVs[3]]Q_gensfill(Q_gen, nVs[1], nVs[2], nVs[3])if non-uniform then set Q_gens