HeatFlowRate |
Real |
Quantity: Power Unit: W |
---|
Modelica.Electrical.Machines.Thermal.AsynchronousInductionMachines Thermal ambient for asynchronous induction machine with squirrel cage |
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Modelica.Electrical.Machines.Thermal.AsynchronousInductionMachines Thermal ambient for asynchronous induction machine with slipring |
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Modelica.Electrical.Machines.Thermal.SynchronousInductionMachines Thermal ambient for synchronous induction machine with permanent magnets |
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Modelica.Electrical.Machines.Thermal.SynchronousInductionMachines Thermal ambient for synchronous induction machine with electrical excitation |
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Modelica.Electrical.Machines.Thermal.SynchronousInductionMachines Thermal ambient for synchronous induction machine with reluctance rotor |
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Modelica.Electrical.Machines.Thermal.DCMachines Thermal ambient for DC machine with permanent magnets |
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Modelica.Electrical.Machines.Thermal.DCMachines Thermal ambient for DC machine with electrical excitation |
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Modelica.Electrical.Machines.Thermal.DCMachines Thermal ambient for DC machine with series excitation |
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Modelica.Electrical.Machines.Thermal.DCMachines Thermal ambient for DC machine with compound excitation |
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Modelica.Electrical.Machines.Thermal Thermal ambient for transformers |
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PartialThermalAmbientInductionMachines Modelica.Electrical.Machines.Interfaces.InductionMachines Partial thermal ambient for induction machines |
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PartialThermalAmbientDCMachines Modelica.Electrical.Machines.Interfaces.DCMachines Partial thermal ambient for DC machines |
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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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Modelica.Fluid.Examples.HeatExchanger.BaseClasses Simple heat exchanger model |
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Modelica.Fluid.Interfaces Common interface for heat transfer models |
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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.Thermal.FluidHeatFlow.Components Pipe with optional heat exchange |
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Modelica.Thermal.FluidHeatFlow.Components Model of a tank under ambient pressure |
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Modelica.Thermal.FluidHeatFlow.Interfaces.Partials Partial model of two port |
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Modelica.Thermal.HeatTransfer.Components Lumped thermal element for heat convection (Q_flow = Gc*dT) |
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Modelica.Thermal.HeatTransfer.Components Lumped thermal element for heat convection (dT = Rc*Q_flow) |
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Modelica.Thermal.HeatTransfer.Sources Fixed heat flow boundary condition |
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Modelica.Thermal.HeatTransfer.Interfaces Partial heat transfer element with two HeatPort connectors that does not store energy |