recordAdsolairData

Record containing parameters for the different Adsolair type 58 configurations

Extends from Modelica.Icons.Record, IDEAS.Fluid.Movers.Data.Generic.

Information

Generic data file which is used for the Buildings.Fluid.Solarcollectors.BaseClasses.PartialSolarCollector model. Establishes the base inputs needed to create model-specific data packages.

Parameters

TypeNameDefaultDescription
Modelica.Units.SI.MassFlowRatem1_flow_nominalNominal mass flow rate of the top duct.
Modelica.Units.SI.MassFlowRatem2_flow_nominalNominal mass flow rate of the bottom duct.
Modelica.Units.SI.TemperaturedT_compressorNominal temperature difference over the heat pump compressor
Modelica.Units.SI.ThermalConductanceG_condensorEquivalent thermal conductance of the condensor
Modelica.Units.SI.ThermalConductanceG_evaporatorEquivalent thermal conductance of the evaporator
RealepsHeating0Thermal efficiency of the heater.
RealepsCooling0Thermal efficiency of the cooler.
RealfraPmin0Minimum fraction of compressor power consumption for 0 modulation of thermal power
Modelica.Units.NonSI.AngularVelocity_rpmN_topRotational speed of the top fan.
Modelica.Units.NonSI.AngularVelocity_rpmN_bottomRotational speed of the bottom fan
RealKv_3wayValveHeater6.3Kv flow coefficient of the three way valve controlling the heater HEX temperature.
Modelica.Units.SI.MassFlowRatem_flow_3way_nominal1660/3600Nominal mass flow rate of the three way valve controlling the heater HEX temperature.
Modelica.Units.SI.MassFlowRatem1_flow_nominal_heater1Nominal mass flow rate of the air going through the heater.
Modelica.Units.SI.MassFlowRatem2_flow_nominal_heater1Nominal mass flow rate of the liquid going through the heater.
Modelica.Units.SI.Pressuredp1_nominal_heater0Nominal air pressure drop over the heater.
Modelica.Units.SI.Pressuredp2_nominal_heater0Nominal liquid pressure drop over the heater.
Modelica.Units.SI.MassFlowRatem1_flow_nominal_cooler1Nominal mass flow rate of the air going through the cooler.
Modelica.Units.SI.MassFlowRatem2_flow_nominal_cooler1Nominal mass flow rate of the liquid going through the cooler.
Modelica.Units.SI.Pressuredp1_nominal_cooler0Nominal air pressure drop over the cooler.
Modelica.Units.SI.Pressuredp2_nominal_cooler0Nominal liquid pressure drop over the cooler.
Modelica.Units.SI.Pressuredp_nominal_topNominal pressure drop over the top duct components excluding two heat exchangers, including compressor heat exchangers, filters, ...
Modelica.Units.SI.Pressuredp_nominal_bottomNominal pressure drop over the bottom duct components excluding two heat exchangers, including compressor heat exchangers, filters...
Modelica.Units.SI.Pressuredp_nominal_top_recupNominal pressure drop over the top part of the cross flow heat recuperator
Modelica.Units.SI.Pressuredp_nominal_bottom_recupNominal pressure drop over the bottom part of the cross flow heat recuperator
Modelica.Units.SI.Pressuredp_adiabaticAdditional pressure drop in top branch of heat recovery unit when evaporative cooling is enabled
Realeps_adia_off1Heat exchange efficiency when adiabatic heat exchange is off
Realeps_adia_on1Heat exchange efficiency when adiabatic heat exchange is on
Modelica.Units.SI.AreaA_dam_byp_topTop bypass damper surface area
Modelica.Units.SI.AreaA_dam_rec_topTop heat recovery damper surface area
Modelica.Units.SI.AreaA_dam_byp_botBottom bypass damper surface area
Modelica.Units.SI.AreaA_dam_rec_botBottom heat recovery damper surface area
Modelica.Units.SI.AreaA_byp_top_minMinimum cross section area of top bypass branch
Modelica.Units.SI.AreaA_byp_bot_minMinimum cross section area of top bypass branch
Modelica.Units.SI.ThermalConductanceUA_adia_onUA value of heat exchanger when evaporative cooling is on
Modelica.Units.SI.ThermalConductanceUA_adia_offUA value of heat exchanger when evaporative cooling is off

Revisions

  • October 11, 2016, by Filip Jorissen:
    Added first implementation.