Nodes of different colours represent the following:
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Type | Intent | Optional | Attributes | Name | ||
---|---|---|---|---|---|---|
integer, | intent(in) | :: | CollectorNum |
Nodes of different colours represent the following:
Solid arrows point from a procedure to one which it calls. Dashed arrows point from an interface to procedures which implement that interface. This could include the module procedures in a generic interface or the implementation in a submodule of an interface in a parent module. Where possible, edges connecting nodes are given different colours to make them easier to distinguish in large graphs.
Nodes of different colours represent the following:
Solid arrows point from a procedure to one which it calls. Dashed arrows point from an interface to procedures which implement that interface. This could include the module procedures in a generic interface or the implementation in a submodule of an interface in a parent module. Where possible, edges connecting nodes are given different colours to make them easier to distinguish in large graphs.
SUBROUTINE UpdateSolarCollector(CollectorNum)
! SUBROUTINE INFORMATION:
! AUTHOR Peter Graham Ellis
! DATE WRITTEN January 2004
! MODIFIED na
! RE-ENGINEERED na
! PURPOSE OF THIS SUBROUTINE:
! Updates the node variables with local variables.
! METHODOLOGY EMPLOYED:
! Standard EnergyPlus methodology.
! USE STATEMENTS:
USE DataLoopNode, ONLY: Node
USE PlantUtilities, ONLY: SafeCopyPlantNode
USE DataPlant, ONLY: PlantLoop
USE FluidProperties, ONLY: GetSpecificHeatGlycol
IMPLICIT NONE ! Enforce explicit typing of all variables in this routine
! SUBROUTINE ARGUMENT DEFINITIONS: na
INTEGER, INTENT(IN) :: CollectorNum
! SUBROUTINE LOCAL VARIABLE DECLARATIONS:
INTEGER :: InletNode
INTEGER :: OutletNode
REAL(r64) :: Cp
! FLOW:
InletNode = Collector(CollectorNum)%InletNode
OutletNode = Collector(CollectorNum)%OutletNode
CAll SafeCopyPlantNode(InletNode,OutletNode)
! Set outlet node variables that are possibly changed
Node(OutletNode)%Temp = Collector(CollectorNum)%OutletTemp
Cp = GetSpecificHeatGlycol(PlantLoop(Collector(CollectorNum)%WLoopNum)%FluidName, &
Collector(CollectorNum)%OutletTemp, &
PlantLoop(Collector(CollectorNum)%WLoopNum)%FluidIndex,&
'UpdateSolarCollector')
Node(OutletNode)%Enthalpy = Cp * Node(OutletNode)%Temp
RETURN
END SUBROUTINE UpdateSolarCollector