TemperatureType for temperature with medium specific attributes |
Real |
Quantity: ThermodynamicTemperature Unit: K Display Unit: degC Restricted Range: 1 to 1.e4 Nominal Value: 300 |
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Modelica.Fluid.Examples.DrumBoiler.BaseClasses Simple Evaporator with two states, see Astroem, Bell: Drum-boiler dynamics, Automatica 36, 2000, pp.363-378 |
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TankWith3InletOutletArraysWithEvaporatorCondensor Modelica.Fluid.Examples.AST_BatchPlant.BaseClasses Tank with Heating and Evaporation |
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Modelica.Fluid.Examples.AST_BatchPlant.BaseClasses Tank with inlet/outlet ports and with inlet ports at the top |
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Modelica.Fluid.Examples.HeatExchanger.BaseClasses Simple heat exchanger model |
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Modelica.Fluid.Vessels Simple tank with inlet/outlet ports |
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Modelica.Fluid.Valves Valve for possibly vaporizing (almost) incompressible fluids, accounts for choked flow conditions |
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Modelica.Fluid.Sources Boundary source component |
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Modelica.Fluid.Sources Boundary with prescribed pressure, temperature, composition and trace substances |
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Modelica.Fluid.Sources Ideal flow source that produces a prescribed mass flow with prescribed temperature, mass fraction and trace substances |
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Modelica.Fluid.Sensors Ideal two port temperature sensor |
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Modelica.Fluid.Interfaces Partial element transporting fluid between two ports without storage of mass or energy |
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Modelica.Fluid.Interfaces Lumped volume with mass and energy balance |
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Modelica.Fluid.Interfaces Base class for distributed volume models |
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Modelica.Media.Examples.Utilities Fixed volume associated with a port by the finite volume method |
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Modelica.Media.Examples.Utilities Ideal pump that produces a constant mass flow rate from a large reservoir at fixed temperature and mass fraction |
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Modelica.Media.Examples.Utilities Ambient pressure, temperature and mass fraction source |
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Modelica.Media.Examples.Tests.Components Fixed volume associated with a port by the finite volume method |
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Modelica.Media.Examples.Tests.Components Ideal pump that produces a constant mass flow rate from a large reservoir at fixed temperature and mass fraction |
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Modelica.Media.Examples.Tests.Components Ambient pressure, temperature and mass fraction source |
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Modelica.Media.Interfaces.TemplateMedium A selection of variables that uniquely defines the thermodynamic state |
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Modelica.Media.Interfaces.PartialMedium Base properties (p, d, T, h, u, R, MM and, if applicable, X and Xi) of a medium |
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Modelica.Media.Interfaces.PartialLinearFluid A selection of variables that uniquely defines the thermodynamic state |
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Modelica.Media.Interfaces.PartialMixtureMedium Thermodynamic state variables |
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Modelica.Media.Interfaces.PartialSimpleMedium Thermodynamic state |
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Modelica.Media.Interfaces.PartialSimpleIdealGasMedium Thermodynamic state of ideal gas |
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Modelica.Media.Interfaces.Types Saturation properties of two phase medium |
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Modelica.Media.Interfaces.Types Validity limits for fluid model |
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Modelica.Media.Interfaces.Types.IdealGas Extended fluid constants |
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Modelica.Media.Interfaces.Types.TwoPhase Extended fluid constants |
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Modelica.Media.Air.ReferenceAir.Air_Base Thermodynamic state |
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Modelica.Media.IdealGases.Common.SingleGasNasa Thermodynamic state variables for ideal gases |
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Modelica.Media.R134a.R134a_ph Thermodynamic state |
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Modelica.Media.Water.WaterIF97_base Thermodynamic state |