Top Level Calling Tree[LINK]
EnergyPlus
ProcessInput (in InputProcessor)
ManageSimulation (in SimulationManager)
ManageWeather (in WeatherManager)
ManageHeatBalance (in HeatBalanceManager)
ManageSurfaceHeatBalance (in
HeatBalanceSurfaceManager)
ManageAirHeatBalance (in
HeatBalanceAirManager)
CalcHeatBalanceAir (in HeatBalanceAirManager)
ManageHVAC (in HVACManager)
The HVAC part of EnergyPlus is divided into a number of
simulation blocks. At this point, there are blocks for the
air system, the zone equipment, the plant equipment, and the
on-site electrical equipment. There will be simulation blocks
for waste heat supply and usage as well as electricity and
gas. Within each HVAC time step, the blocks are simulated
repeatedly until the conditions on each side of each block
interface match up. The following calling tree represents the
high level HVAC simulation structure. It is schematic – not
all routines are shown.
Top Level Calling Tree[LINK]
EnergyPlus
ProcessInput (in InputProcessor)
ManageSimulation (in SimulationManager)
ManageWeather (in WeatherManager)
ManageHeatBalance (in HeatBalanceManager)
ManageSurfaceHeatBalance (in HeatBalanceSurfaceManager)
ManageAirHeatBalance (in HeatBalanceAirManager)
CalcHeatBalanceAir (in HeatBalanceAirManager)
ManageHVAC (in HVACManager)
The HVAC part of EnergyPlus is divided into a number of simulation blocks. At this point, there are blocks for the air system, the zone equipment, the plant equipment, and the on-site electrical equipment. There will be simulation blocks for waste heat supply and usage as well as electricity and gas. Within each HVAC time step, the blocks are simulated repeatedly until the conditions on each side of each block interface match up. The following calling tree represents the high level HVAC simulation structure. It is schematic – not all routines are shown.
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This documentation is made available under the EnergyPlus Open Source License v1.0.