modelPGVH_stove

Diagram of PGVH_stove

Information

PGVH PELLET STOVE

Hypothesis and equations

The purpose of this model is to be part of the PGVH model

The pellet stove described below works according to the model developped by the "Solar Energy Research Center" work the "TRNSys model for Type 210 - Pellet stove with heat liquid exchanger"

The only output used on this very model is the power delivered to the room (PowerOut.Q_flow)

Here the combustion's steps are delimited by time parameters, and within each step experimental values are used

Bibliography

none

Instructions for use

none

Known limits / Use precautions

none

Validations

Validated model - EIFER 08/2011

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Licensed by EDF under a 3-clause BSD-license
Copyright © EDF 2009 - 2023
BuildSysPro version 3.6.0
Author : EIFER, EDF (2011)
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Parameters

TypeNameDefaultDescription
SI.Timedt_sta1360 Duration of first part of start sequence
SI.Timedt_sta2216 Duration of second part of start sequence
SI.Timedt_fanstp241.2 Time of fan operation during stop phase
SI.Timetcglow298.8 Time constant for after glow phase
SI.Massmfg505 Flue gas leak flow at (Texh-Toutdoor)=50 C
SI.Massmfgfanstp65 Mass flow of flue gas during fan op after stp
SI.Massmflq96 Mass flow of liquid entering heat exchanger
SI.HeatCapacitymcpm165 Thermal mass of mass 1
SI.HeatCapacitymcpm235 Thermal mass of mass 2
SI.SpecificHeatCapacityCpliq1.02 Liquid specific heat
RealHf18000 Lower heating value of fuel
RealAf5.57 Theoretical air to fuel mass flow ratio at stoechiometric combustion
Reallbd03.59 Air factor, constant
Reallbd10.036 Air factor, slope
SI.ThermalConductanceUAgm109.19 UA value between gas and m1 at ?=0
SI.ThermalConductanceUAgm1118.4 UA value between gas and m1, slope
SI.ThermalConductanceUAgm2028.1 UA value between gas and m2 at ?=0
SI.ThermalConductanceUAgm2156.2 UA value between gas and m2, slope
SI.ThermalConductanceUAma03.68 UA value between m1 and ambient air at ?=0
SI.ThermalConductanceUAma10.96 UA value between m1 and ambient air, slope
SI.ThermalConductanceUAmm01.1 UA value between m1 and m2 at ?=0
SI.ThermalConductanceUAmm10.1 UA value between m1 and m2, slope
SI.ThermalConductanceUAmlq0200 UA value between m2 and liquid at ?=0
SI.ThermalConductanceUAmlq1180 UA value between m2 and liquid, slope
SI.PowerPcmb_sta3333 Combustion power during 2nd part of start phase
SI.PowerPmax7650 Maximum power of the PGVH stove
SI.PowerPe033 Electrical power consumption at gamma=0
SI.PowerPel_18.88 Electrical power consumption, slope
SI.PowerPel_sta330 Electric power at start phase part 1
SI.Frequencyf1/50 frequency for mean calculation: here it is 50 seconds

Connectors

TypeNameDefaultDescription
Modelica.Blocks.Interfaces.RealInputgfraction of maximum power
Modelica.Blocks.Interfaces.RealInputTonMin temperature before stove starts
Modelica.Blocks.Interfaces.RealInputToffMax temperature before stove stops
Modelica.Thermal.HeatTransfer.Interfaces.HeatPort_aTsensHeat port connected to the room
Modelica.Thermal.HeatTransfer.Interfaces.HeatPort_bPowerOutPower transmitted to the room
Modelica.Blocks.Interfaces.BooleanInputpresenceIndicates if the user is present in the house

Components

TypeNameDefaultDescription
SI.Timet_sta Simulation time when the stove turns on
SI.Timet_sta1 Simulation time at the end of the first part of the start phase
SI.Timet_sta2 Simulation time at the end of the second part of the start phase
SI.Timet_stp Simulation time when the stove turns off
SI.Timet_fanstp Duration of fan operation after stop
SI.TemperatureTg2 Flue gas temperature
SI.TemperatureToutd Outdoor temperature
SI.TemperatureTg0 Temperature of combustion gas before meeting m1
SI.TemperatureTg1 Temperature of combustion gas before meeting m2
SI.TemperatureTm1 Temperature of mass1 (connected to ambiant air)
SI.TemperatureTm2 Temperature of mass2 (connected to heat exchanger)
SI.TemperatureTlqi Temperature of liquid entering heat exchanger
SI.TemperatureTlqo Temperature of liquid out of heat exchanger
SI.Massmfa Combustion air mass flow
SI.Massmff Fuel mass flow
SI.Massmfg Flue gas leak flow
SI.SpecificHeatCapacityCpg Average flue gas specific heat
IntegerOpph Operation phase during timestep
RealO2dry Dry quantity of O2
BooleanBsta Boolean indicator for temperature below minimum wanted
BooleanBstp Boolean indicator for temperature ahead maximum wanted
BooleanGO Boolean control for start phase
BooleanSTOP Boolean control for stop phase
SI.ThermalConductanceUAgm1 Actual UA value between gas and m1
SI.ThermalConductanceUAgm2 Actual UA value between gas and m2
SI.ThermalConductanceUAma Actual UA value between m1 and ambient air
SI.ThermalConductanceUAmm Actual UA value between m1 and m2
SI.ThermalConductanceUAmliq Actual UA value between m2 and liquid
SI.PowerPcmb puissance de combustion
SI.PowerPel puissance électrique consommée
SI.PowerPgm1 Power from combustion gas to m1
SI.PowerPgm2 Power from combustion gas to m2
SI.PowerPliq Power to liquid through heat exchanger
SI.PowerPamb Power to ambient air in room
SI.PowerPm1m2 Power from m1 to m2
SI.PowerPg Power to exhaust gas
SI.PowerPcmbstp Mean of Pcmb over the last minutes (as defined below)
Modelica.Thermal.HeatTransfer.Sources.PrescribedTemperatureTon_conv
Modelica.Thermal.HeatTransfer.Sources.PrescribedTemperatureToff_conv