modelIdealHeatTransfer

Delta T across the boundary layer is zero (infinite h.t.c.)

Extends from BaseClasses.DistributedHeatTransferFV (Base class for distributed heat transfer models - finite volumes).

Parameters

TypeNameDefaultDescription
BooleanuseAverageTemperature (from DistributedHeatTransferFV)true= true to use average temperature for heat transfer
SI.Lengthl (from DistributedHeatTransferFV)L/(Nw)Length of a single volume
Modelica.SIunits.PerUnitkc (from DistributedHeatTransferFV)1Correction factor for heat transfer
Set by Flow1D model
IntegerNf (from DistributedHeatTransferFV)2Number of nodes on the fluid side
IntegerNw (from DistributedHeatTransferFV)Nf - 1Number of volumes on the wall side
IntegerNt (from DistributedHeatTransferFV)Number of tubes in parallel
SI.DistanceL (from DistributedHeatTransferFV)Tube length
SI.AreaA (from DistributedHeatTransferFV)Cross-sectional area (single tube)
SI.Lengthomega (from DistributedHeatTransferFV)Wet perimeter of heat transfer surface (single tube)
SI.LengthDhyd (from DistributedHeatTransferFV)Hydraulic Diameter (single tube)
SI.MassFlowRatewnom (from DistributedHeatTransferFV)Nominal mass flow rate (single tube)

Connectors

TypeNameDefaultDescription
ThermoPower.Thermal.DHTVolumeswall (from DistributedHeatTransferFV)

Components

TypeNameDefaultDescription
Medium.ThermodynamicState[Nf]fluidState (from DistributedHeatTransferFV)
Medium.MassFlowRate[Nf]w (from DistributedHeatTransferFV)
Medium.Temperature[Nf]T (from DistributedHeatTransferFV)Temperatures at the fluid side nodes
Medium.Temperature[Nw]Tw (from DistributedHeatTransferFV)Temperatures of the wall volumes
SI.Power[Nw]Qw (from DistributedHeatTransferFV)Heat flows entering from the wall volumes
SI.Power[Nf - 1]Qvol (from DistributedHeatTransferFV)QwHeat flows going to the fluid volumes
SI.PowerQ (from DistributedHeatTransferFV)Total heat flow through lateral boundary