feat : temperature , heatflux and capacity
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20
Formation/OTRERA_formation/Components/Heatflow.mo
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20
Formation/OTRERA_formation/Components/Heatflow.mo
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within OTRERA_formation.Components;
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model Heatflow
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//USER DEFINED PARAMETERS
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parameter Modelica.Units.SI.HeatFlowRate Q_flow;
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//INTERNAL VARIABLES
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//IMPORTED COMPONENTS
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Modelica.Thermal.HeatTransfer.Interfaces.HeatPort_b port annotation(
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Placement(transformation(origin = {0, 2}, extent = {{-10, -10}, {10, 10}}), iconTransformation(origin = {4, -2}, extent = {{-10, -10}, {10, 10}})));
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equation
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Q_flow = -port.Q_flow ;
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annotation(
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Icon(graphics = {Line(origin = {-53, 0}, points = {{-43, 0}, {43, 0}}, color = {246, 97, 81}, thickness = 3, arrow = {Arrow.None, Arrow.Filled}), Rectangle(origin = {-50, 0}, extent = {{-50, 100}, {50, -100}})}));
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end Heatflow;
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17
Formation/OTRERA_formation/Components/Temperature.mo
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Formation/OTRERA_formation/Components/Temperature.mo
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within OTRERA_formation.Components;
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model Temperature
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//USER DEFINED PARAMETERS
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parameter Modelica.Units.SI.Temperature T ;
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//INTERNAL VARIABLES
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//IMPORTED COMPONENTS
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Modelica.Thermal.HeatTransfer.Interfaces.HeatPort_a port annotation(
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Placement(transformation(extent = {{-10, -10}, {10, 10}}), iconTransformation(origin = {-2, 0}, extent = {{-10, -10}, {10, 10}})));
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equation
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T = port.T;
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annotation(
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Diagram(graphics),
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Icon(graphics = {Rectangle(origin = {-50, 0}, extent = {{-50, 100}, {50, -100}}), Text(origin = {-45, 21}, extent = {{27, -23}, {-27, 23}}, textString = "T°")}));
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end Temperature;
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30
Formation/OTRERA_formation/Components/ThermalCapacity.mo
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30
Formation/OTRERA_formation/Components/ThermalCapacity.mo
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within OTRERA_formation.Components;
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model ThermalCapacity
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//USER DEFINED PARAMETERS
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parameter Modelica.Units.SI.Mass m = 10 "Object mass";
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parameter Modelica.Units.SI.SpecificHeatCapacity cp(min=0) = 1000 ;
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parameter Modelica.Units.SI.Temperature T_start = 283.15 ;
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//INTERNAL VARIABLES
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Modelica.Units.SI.Temperature T ;
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Modelica.Units.SI.HeatFlowRate Q_flow ;
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//IMPORTED COMPONENTS
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Modelica.Thermal.HeatTransfer.Interfaces.HeatPort_a port annotation(
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Placement(transformation(extent = {{-10, -10}, {10, 10}}), iconTransformation(origin = {-2, -4}, extent = {{-10, -10}, {10, 10}})));
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initial equation
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T = T_start ;
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equation
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Q_flow = m * cp * der(T) ;
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//PORT HANDOVER
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Q_flow = port.Q_flow ;
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T = port.T ;
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annotation(
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Icon(graphics = {Ellipse(origin = {-2, 3}, fillColor = {134, 94, 60}, fillPattern = FillPattern.Solid, extent = {{-92, -85}, {92, 85}})}));
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end ThermalCapacity;
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4
Formation/OTRERA_formation/Components/package.mo
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4
Formation/OTRERA_formation/Components/package.mo
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within OTRERA_formation;
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package Components
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end Components;
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3
Formation/OTRERA_formation/Components/package.order
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3
Formation/OTRERA_formation/Components/package.order
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ThermalCapacity
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Heatflow
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Temperature
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