modelCoolBiDirektional_Direct

Two port model of bidirectional consumer and producer using direct heat transfer

Extends from Buildings.Fluid.Interfaces.PartialTwoPortInterface (Partial model with two ports and declaration of quantities that are used by many models), Buildings.Fluid.Interfaces.TwoPortFlowResistanceParameters (Parameters for flow resistance for models with two ports), dhcSim.DHC.Submodules.TwoPortModules.Interfaces.TwoPortModulesParameters (Record of needed parameters for two port modules).

Parameters

TypeNameDefaultDescription
Assumptions
BooleanallowFlowReversal (from PartialTwoPort)true= false to simplify equations, assuming, but not enforcing, no flow reversal
Nominal condition
Modelica.Units.SI.MassFlowRatem_flow_nominal (from PartialTwoPortInterface)Nominal mass flow rate
Modelica.Units.SI.PressureDifferencedp_nominal (from TwoPortFlowResistanceParameters)Pressure difference
Advanced
Modelica.Units.SI.MassFlowRatem_flow_small (from PartialTwoPortInterface)1E-4*abs(m_flow_nominal)Small mass flow rate for regularization of zero flow
Advanced › Diagnostics
Booleanshow_T (from PartialTwoPortInterface)false= true, if actual temperature at port is computed
Flow resistance
BooleancomputeFlowResistance (from TwoPortFlowResistanceParameters)true=true, compute flow resistance. Set to false to assume no friction
Booleanfrom_dp (from TwoPortFlowResistanceParameters)false= true, use m_flow = f(dp) else dp = f(m_flow)
BooleanlinearizeFlowResistance (from TwoPortFlowResistanceParameters)false= true, use linear relation between m_flow and dp for any flow rate
RealdeltaM (from TwoPortFlowResistanceParameters)0.1Fraction of nominal flow rate where flow transitions to laminar
Dynamics
Modelica.SIunits.Timetau (from TwoPortModulesParameters)10Time constant at nominal flow rate (used if energyDynamics or massDynamics not equal Modelica.Fluid.Types.Dynamics.SteadyState)
Initialization
Modelica.SIunits.TemperatureT_start (from TwoPortModulesParameters)273.15 + 20Start value of temperature
Dynamics › Equations
Modelica.Fluid.Types.DynamicsenergyDynamics (from TwoPortModulesParameters)Modelica.Fluid.Types.Dynamics.SteadyStateType of energy balance: dynamic (3 initialization options) or steady state

Connectors

TypeNameDefaultDescription
Modelica.Fluid.Interfaces.FluidPort_aport_a (from PartialTwoPort)Fluid connector a (positive design flow direction is from port_a to port_b)
Modelica.Fluid.Interfaces.FluidPort_bport_b (from PartialTwoPort)Fluid connector b (positive design flow direction is from port_a to port_b)
Modelica.Blocks.Interfaces.RealInputQLoad_inpositive = cool consumer; negative = cool producer
Modelica.Blocks.Interfaces.RealInputTRet_in
Modelica.Blocks.Interfaces.RealInputTSup_in
Modelica.Blocks.Interfaces.RealOutputQ_flow_out
Modelica.Blocks.Interfaces.RealOutputdp_outPressure drop

Components

TypeNameDefaultDescription
Modelica.Units.SI.MassFlowRatem_flow (from PartialTwoPortInterface)port_a.m_flowMass flow rate from port_a to port_b (m_flow > 0 is design flow direction)
Modelica.Units.SI.PressureDifferencedp (from PartialTwoPortInterface)port_a.p - port_b.pPressure difference between port_a and port_b
Medium.ThermodynamicStatesta_a (from PartialTwoPortInterface)if allowFlowReversal then Medium.setState_phX(port_a.p, noEvent(actualStream(port_a.h_outflow)), noEvent(actualStream(port_a.Xi_outflow))) else Medium.setState_phX(port_a.p, noEvent(inStream(port_a.h_outflow)), noEvent(inStream(port_a.Xi_outflow)))Medium properties in port_a
Medium.ThermodynamicStatesta_b (from PartialTwoPortInterface)if allowFlowReversal then Medium.setState_phX(port_b.p, noEvent(actualStream(port_b.h_outflow)), noEvent(actualStream(port_b.Xi_outflow))) else Medium.setState_phX(port_b.p, noEvent(port_b.h_outflow), noEvent(port_b.Xi_outflow))Medium properties in port_b
Modelica.SIunits.MassFlowRatem_flow_calcCalculated mass flow rate according to temperatures and load profile
Modelica.SIunits.MassFlowRatem_flow_maxMaximum mass flow rate of participant
Modelica.SIunits.SpecificEnthalpyhIn
Modelica.SIunits.SpecificEnthalpyhSet
Buildings.Fluid.Interfaces.PrescribedOutletcoolPro
Buildings.Fluid.Interfaces.PrescribedOutletcoolCon
Buildings.Fluid.Movers.BaseClasses.IdealSourceideSou
Modelica.Blocks.Math.Addadd
Buildings.Fluid.FixedResistances.PressureDropres
Modelica.Blocks.Sources.RealExpressionrealExpression
Modelica.Blocks.Sources.RealExpressionset_dp