Extends from Buildings.BaseClasses.BaseIconExamples (Icon for Examples packages).
| Name | Description |
|---|---|
| MoistAirTemperatureEnthalpyInversion | Model to check computation of h(T) and its inverse |
| MoistAirUnsaturatedTemperatureEnthalpyInversion | Model to check computation of h(T) and its inverse |
Buildings.Media.GasesPTDecoupled.Examples.TestMoistAir
Extends from Modelica.Media.Examples.Tests.Components.PartialTestModel (Basic test model to test a medium).
| Type | Name | Default | Description |
|---|---|---|---|
| replaceable package Medium | PartialMedium | Medium model | |
| AbsolutePressure | p_start | Medium.p_default | Initial value of pressure [Pa] |
| Temperature | T_start | Medium.T_default | Initial value of temperature [K] |
| SpecificEnthalpy | h_start | Medium.h_default | Initial value of specific enthalpy [J/kg] |
| Real | X_start[Medium.nX] | Medium.X_default | Initial value of mass fractions |
| Type | Name | Description |
|---|---|---|
| replaceable package Medium | Medium model | |
model TestMoistAir
extends Modelica.Media.Examples.Tests.Components.PartialTestModel(
redeclare package Medium =
Buildings.Media.GasesPTDecoupled.MoistAir);
end TestMoistAir;
Buildings.Media.GasesPTDecoupled.Examples.TestMoistAirUnsaturated
Extends from Modelica.Media.Examples.Tests.Components.PartialTestModel (Basic test model to test a medium).
| Type | Name | Default | Description |
|---|---|---|---|
| replaceable package Medium | PartialMedium | Medium model | |
| AbsolutePressure | p_start | Medium.p_default | Initial value of pressure [Pa] |
| Temperature | T_start | Medium.T_default | Initial value of temperature [K] |
| SpecificEnthalpy | h_start | Medium.h_default | Initial value of specific enthalpy [J/kg] |
| Real | X_start[Medium.nX] | Medium.X_default | Initial value of mass fractions |
| Type | Name | Description |
|---|---|---|
| replaceable package Medium | Medium model | |
model TestMoistAirUnsaturated
extends Modelica.Media.Examples.Tests.Components.PartialTestModel(
redeclare package Medium =
Buildings.Media.GasesPTDecoupled.MoistAirUnsaturated);
end TestMoistAirUnsaturated;
Buildings.Media.GasesPTDecoupled.Examples.TestSimpleAir
Extends from Modelica.Media.Examples.Tests.Components.PartialTestModel (Basic test model to test a medium).
| Type | Name | Default | Description |
|---|---|---|---|
| replaceable package Medium | PartialMedium | Medium model | |
| AbsolutePressure | p_start | Medium.p_default | Initial value of pressure [Pa] |
| Temperature | T_start | Medium.T_default | Initial value of temperature [K] |
| SpecificEnthalpy | h_start | Medium.h_default | Initial value of specific enthalpy [J/kg] |
| Real | X_start[Medium.nX] | Medium.X_default | Initial value of mass fractions |
| Type | Name | Description |
|---|---|---|
| replaceable package Medium | Medium model | |
model TestSimpleAir
extends Modelica.Media.Examples.Tests.Components.PartialTestModel(
redeclare package Medium =
Buildings.Media.GasesPTDecoupled.SimpleAir);
end TestSimpleAir;
| Type | Name | Default | Description |
|---|---|---|---|
| replaceable package Medium | PartialCondensingGases | ||
| Temperature | T0 | 273.15 + 20 | Temperature [K] |
| Type | Name | Description |
|---|---|---|
| replaceable package Medium | ||
model MoistAirTemperatureEnthalpyInversion
"Model to check computation of h(T) and its inverse"
extends Buildings.Media.BaseClasses.TestTemperatureEnthalpyInversion(
redeclare package Medium = Buildings.Media.GasesPTDecoupled.MoistAir);
end MoistAirTemperatureEnthalpyInversion;
| Type | Name | Default | Description |
|---|---|---|---|
| replaceable package Medium | PartialCondensingGases | ||
| Temperature | T0 | 273.15 + 20 | Temperature [K] |
| Type | Name | Description |
|---|---|---|
| replaceable package Medium | ||
model MoistAirUnsaturatedTemperatureEnthalpyInversion
"Model to check computation of h(T) and its inverse"
extends Buildings.Media.BaseClasses.TestTemperatureEnthalpyInversion(
redeclare package Medium =
Buildings.Media.GasesPTDecoupled.MoistAirUnsaturated);
end MoistAirUnsaturatedTemperatureEnthalpyInversion;