diff --git a/Buildings/Experimental/DHC/Loads/BaseClasses/Validation/SimpleRoomODE.mo b/Buildings/Experimental/DHC/Loads/BaseClasses/Validation/SimpleRoomODE.mo
index 6ef971cde68..e4d0bd8f1da 100644
--- a/Buildings/Experimental/DHC/Loads/BaseClasses/Validation/SimpleRoomODE.mo
+++ b/Buildings/Experimental/DHC/Loads/BaseClasses/Validation/SimpleRoomODE.mo
@@ -166,9 +166,9 @@ equation
This example validates
-
+
Buildings.Experimental.DHC.Loads.BaseClasses.SimpleRoomODE by comparison with
-
+
Buildings.ThermalZones.ReducedOrder.RC.TwoElements.
A first instance of the reduced order model is used to assess the heating and
diff --git a/Buildings/Experimental/DHC/Networks/Combined/BaseClasses/PipeAutosize.mo b/Buildings/Experimental/DHC/Networks/Combined/BaseClasses/PipeAutosize.mo
index 32098ccf89f..39c24690078 100644
--- a/Buildings/Experimental/DHC/Networks/Combined/BaseClasses/PipeAutosize.mo
+++ b/Buildings/Experimental/DHC/Networks/Combined/BaseClasses/PipeAutosize.mo
@@ -75,7 +75,7 @@ annotation (
Documentation(info="
This model is similar to
-
+
Buildings.Fluid.FixedResistances.HydraulicDiameter
except for the modifications below which allow to use this model for computing the
hydraulic diameter at initialization, based on the pressure drop per pipe length
diff --git a/Buildings/Experimental/DHC/Networks/Combined/BaseClasses/PipeStandard.mo b/Buildings/Experimental/DHC/Networks/Combined/BaseClasses/PipeStandard.mo
index b4f821838db..85069cae6b6 100644
--- a/Buildings/Experimental/DHC/Networks/Combined/BaseClasses/PipeStandard.mo
+++ b/Buildings/Experimental/DHC/Networks/Combined/BaseClasses/PipeStandard.mo
@@ -23,7 +23,7 @@ First implementation.
", info="
This model is similar to
-
+
Buildings.Fluid.FixedResistances.HydraulicDiameter
except that a binding equation is provided to compute the nominal fluid velocity
from the hydraulic diameter (as opposed to the hydraulic diameter being
diff --git a/Buildings/Experimental/DHC/Networks/Combined/UnidirectionalSeries.mo b/Buildings/Experimental/DHC/Networks/Combined/UnidirectionalSeries.mo
index d80d67488b4..dc9ebdc0472 100644
--- a/Buildings/Experimental/DHC/Networks/Combined/UnidirectionalSeries.mo
+++ b/Buildings/Experimental/DHC/Networks/Combined/UnidirectionalSeries.mo
@@ -50,7 +50,7 @@ at nominal flow rate.
Note that dhDis
needs to be vectorized, even if the same value
is computed for each array element in case of a one-pipe network.
This is because the pipe diameter is computed at initialization by the model
-
+
Buildings.Experimental.DHC.Networks.Combined.BaseClasses.ConnectionSeriesAutosize
which is instantiated for each connection.
So the initialization system of equations would be overdetermined if using
diff --git a/Buildings/Fluid/Boilers/BoilerTable.mo b/Buildings/Fluid/Boilers/BoilerTable.mo
index f913dff2d7f..f91fcdb399a 100644
--- a/Buildings/Fluid/Boilers/BoilerTable.mo
+++ b/Buildings/Fluid/Boilers/BoilerTable.mo
@@ -46,7 +46,7 @@ Buildings.Fluid.Boilers.UsersGuide
for details.
diff --git a/Buildings/Fluid/Boilers/Validation/BoilerTableEfficiencyCurves.mo b/Buildings/Fluid/Boilers/Validation/BoilerTableEfficiencyCurves.mo
index 825c04baf3c..0011ef3eb41 100644
--- a/Buildings/Fluid/Boilers/Validation/BoilerTableEfficiencyCurves.mo
+++ b/Buildings/Fluid/Boilers/Validation/BoilerTableEfficiencyCurves.mo
@@ -111,7 +111,7 @@ equation
Documentation(info="
diff --git a/Buildings/Fluid/Chillers/Data/ElectricEIR.mo b/Buildings/Fluid/Chillers/Data/ElectricEIR.mo
index 24675712361..30b18d4ad85 100644
--- a/Buildings/Fluid/Chillers/Data/ElectricEIR.mo
+++ b/Buildings/Fluid/Chillers/Data/ElectricEIR.mo
@@ -25,7 +25,7 @@ package ElectricEIR "Performance data for chiller ElectricEIR"
"
This record is used as a template for performance data
for the chiller model
-
+
Buildings.Fluid.Chillers.ElectricEIR.
", revisions="
diff --git a/Buildings/Fluid/Chillers/Data/ElectricReformulatedEIR.mo b/Buildings/Fluid/Chillers/Data/ElectricReformulatedEIR.mo
index 47c7016303a..4a765bf3bc9 100644
--- a/Buildings/Fluid/Chillers/Data/ElectricReformulatedEIR.mo
+++ b/Buildings/Fluid/Chillers/Data/ElectricReformulatedEIR.mo
@@ -23,7 +23,7 @@ package ElectricReformulatedEIR "Performance data for chiller ElectricReformulat
"
This record is used as a template for performance data
for the chiller model
-
+
Buildings.Fluid.Chillers.ElectricReformulatedEIR.
", revisions="
diff --git a/Buildings/Fluid/Chillers/ElectricEIR.mo b/Buildings/Fluid/Chillers/ElectricEIR.mo
index 19f5b9a3898..a7d33f4410b 100644
--- a/Buildings/Fluid/Chillers/ElectricEIR.mo
+++ b/Buildings/Fluid/Chillers/ElectricEIR.mo
@@ -155,7 +155,7 @@ condenser entering and evaporator leaving fluid temperature.
These curves are stored in the data record per
and are available from
-
+
Buildings.Fluid.Chillers.Data.ElectricEIR.
Additional performance curves can be developed using
two available techniques (Hydeman and Gillespie, 2002). The first technique is called the
@@ -220,7 +220,7 @@ outlet of the evaporator barrel if coo
is true
.
Otherwise, if coo
is false
, the chiller is tracking
a hot water supply temperature setpoint at the outlet of the condenser barrel.
See
-
+
Buildings.Fluid.Chillers.Examples.ElectricEIR_HeatRecovery
for an example with a chiller operating in heating mode.
diff --git a/Buildings/Fluid/Chillers/ElectricReformulatedEIR.mo b/Buildings/Fluid/Chillers/ElectricReformulatedEIR.mo
index 8c32fdd672c..a070925b9b2 100644
--- a/Buildings/Fluid/Chillers/ElectricReformulatedEIR.mo
+++ b/Buildings/Fluid/Chillers/ElectricReformulatedEIR.mo
@@ -120,7 +120,7 @@ Hydeman et al. (2002) that has been developed in the CoolTools project
and that is implemented in EnergyPlus as the model
Chiller:Electric:ReformulatedEIR
.
This empirical model is similar to
-
+
Buildings.Fluid.Chillers.ElectricEIR.
The difference is that to compute the performance, this model
uses the condenser leaving temperature instead of the entering temperature,
@@ -146,7 +146,7 @@ condenser leaving and evaporator leaving fluid temperature.
These curves are stored in the data record per
and are available from
-
+
Buildings.Fluid.Chillers.Data.ElectricReformulatedEIR.
Additional performance curves can be developed using
two available techniques (Hydeman and Gillespie, 2002). The first technique is called the
@@ -212,7 +212,7 @@ outlet of the evaporator barrel if coo
is true
.
Otherwise, if coo
is false
, the chiller is tracking
a hot water supply temperature setpoint at the outlet of the condenser barrel.
See
-
+
Buildings.Fluid.Chillers.Examples.ElectricEIR_HeatRecovery
for an example with a chiller operating in heating mode.
diff --git a/Buildings/Fluid/Chillers/Examples/AbsorptionIndirectSteam.mo b/Buildings/Fluid/Chillers/Examples/AbsorptionIndirectSteam.mo
index 0f0bc5a978e..ac42de98ece 100644
--- a/Buildings/Fluid/Chillers/Examples/AbsorptionIndirectSteam.mo
+++ b/Buildings/Fluid/Chillers/Examples/AbsorptionIndirectSteam.mo
@@ -114,7 +114,7 @@ __Dymola_Commands(file="modelica://Buildings/Resources/Scripts/Dymola/Fluid/Chil
Documentation(info="
Example that simulates the absorption chiller
-
+
Buildings.Fluid.Chillers.AbsorptionIndirectSteam
for different inlet conditions.
diff --git a/Buildings/Fluid/Chillers/Examples/AbsorptionIndirectSteamVaryingLoad.mo b/Buildings/Fluid/Chillers/Examples/AbsorptionIndirectSteamVaryingLoad.mo
index 70d1012115f..02100bbf2be 100644
--- a/Buildings/Fluid/Chillers/Examples/AbsorptionIndirectSteamVaryingLoad.mo
+++ b/Buildings/Fluid/Chillers/Examples/AbsorptionIndirectSteamVaryingLoad.mo
@@ -141,7 +141,7 @@ equation
Documentation(info="
This model validates
-
+
Buildings.Fluid.Chillers.AbsorptionIndirectSteam.
for the case with varying cooling load.
diff --git a/Buildings/Fluid/Chillers/Validation/AbsorptionIndirectSteam_EnergyPlus.mo b/Buildings/Fluid/Chillers/Validation/AbsorptionIndirectSteam_EnergyPlus.mo
index 1692de6bc7a..3093222c773 100644
--- a/Buildings/Fluid/Chillers/Validation/AbsorptionIndirectSteam_EnergyPlus.mo
+++ b/Buildings/Fluid/Chillers/Validation/AbsorptionIndirectSteam_EnergyPlus.mo
@@ -152,7 +152,7 @@ equation
Documentation(info="
This model validates
-
+
Buildings.Fluid.Chillers.AbsorptionIndirectSteam.
The EnergyPlus results were generated using the example file IndirectAbsorptionChiller.idf
diff --git a/Buildings/Fluid/FMI/Adaptors/Examples/ThermalZoneHVACWithExhaust.mo b/Buildings/Fluid/FMI/Adaptors/Examples/ThermalZoneHVACWithExhaust.mo
index d41e2acb14f..f18243a3b51 100644
--- a/Buildings/Fluid/FMI/Adaptors/Examples/ThermalZoneHVACWithExhaust.mo
+++ b/Buildings/Fluid/FMI/Adaptors/Examples/ThermalZoneHVACWithExhaust.mo
@@ -39,7 +39,7 @@ Buildings.Fluid.FMI.Adaptors.ThermalZone
It is identical to
-
+
Buildings.Fluid.FMI.Adaptors.Examples.ThermalZoneHVACNoExhaust
except that it adds a forced exhaust air stream.
diff --git a/Buildings/Fluid/FixedResistances/BaseClasses/PlugFlowPipe.mo b/Buildings/Fluid/FixedResistances/BaseClasses/PlugFlowPipe.mo
index f14b50bcc3b..2375f7dc459 100644
--- a/Buildings/Fluid/FixedResistances/BaseClasses/PlugFlowPipe.mo
+++ b/Buildings/Fluid/FixedResistances/BaseClasses/PlugFlowPipe.mo
@@ -342,14 +342,14 @@ equation
-
October 15, 2021, by Michael Wetter:
Moved model to BaseClasses
. This allows
-Buildings.Fluid.FixedResistances.PlugFlowPipe
+Buildings.Fluid.FixedResistances.PlugFlowPipe
to redeclare the resistance as final, thereby avoiding that a GUI presents this instance
to users as a replaceable class.
-
October 05, 2021, by Baptiste Ravache:
Made model symmetrical and extends from
-
+
Buildings.Fluid.Interfaces.PartialTwoPortInterface.
-
diff --git a/Buildings/Fluid/FixedResistances/PlugFlowPipe.mo b/Buildings/Fluid/FixedResistances/PlugFlowPipe.mo
index 4233f20962e..98a4623f2f0 100644
--- a/Buildings/Fluid/FixedResistances/PlugFlowPipe.mo
+++ b/Buildings/Fluid/FixedResistances/PlugFlowPipe.mo
@@ -64,7 +64,7 @@ model PlugFlowPipe
-
October 05, 2021, by Baptiste Ravache:
Made model symmetrical and extends from
-
+
Buildings.Fluid.Interfaces.PartialTwoPortInterface.
-
diff --git a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg150801.mo b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg150801.mo
index dbafb4d0a5e..d6b3759db30 100644
--- a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg150801.mo
+++ b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg150801.mo
@@ -34,7 +34,7 @@ First implementation.
This data record contains the experimental data from the
long test bench carried out at the University of Liège.
-See
+See
Buildings.Fluid.FixedResistances.Validation.PlugFlowPipes.Data.BaseClasses.PipeDataULg
for more information.
diff --git a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151202.mo b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151202.mo
index 47f0aa9aee8..23d23af6cbb 100644
--- a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151202.mo
+++ b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151202.mo
@@ -34,7 +34,7 @@ First implementation.
This data record contains the experimental data from the
long test bench carried out at the University of Liège.
-See
+See
Buildings.Fluid.FixedResistances.Validation.PlugFlowPipes.Data.BaseClasses.PipeDataULg
for more information.
diff --git a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_1.mo b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_1.mo
index a04909d3fcb..810c9510c73 100644
--- a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_1.mo
+++ b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_1.mo
@@ -35,7 +35,7 @@ First implementation.
This data record contains the experimental data from the
long test bench carried out at the University of Liège.
-See
+See
Buildings.Fluid.FixedResistances.Validation.PlugFlowPipes.Data.BaseClasses.PipeDataULg
for more information.
diff --git a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_2.mo b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_2.mo
index 9414dc8c826..e63bbd5f739 100644
--- a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_2.mo
+++ b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_2.mo
@@ -34,7 +34,7 @@ First implementation.
This data record contains the experimental data from the
long test bench carried out at the University of Liège.
-See
+See
Buildings.Fluid.FixedResistances.Validation.PlugFlowPipes.Data.BaseClasses.PipeDataULg
for more information.
diff --git a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_4.mo b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_4.mo
index 63f4e2b2e66..bf2fb952440 100644
--- a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_4.mo
+++ b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg151204_4.mo
@@ -34,7 +34,7 @@ First implementation.
This data record contains the experimental data from the
long test bench carried out at the University of Liège.
-See
+See
Buildings.Fluid.FixedResistances.Validation.PlugFlowPipes.Data.BaseClasses.PipeDataULg
for more information.
diff --git a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg160104_2.mo b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg160104_2.mo
index d3c26af2546..5b4e7041306 100644
--- a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg160104_2.mo
+++ b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg160104_2.mo
@@ -33,7 +33,7 @@ First implementation.
This data record contains the experimental data from the
long test bench carried out at the University of Liège.
-See
+See
Buildings.Fluid.FixedResistances.Validation.PlugFlowPipes.Data.BaseClasses.PipeDataULg
for more information.
diff --git a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg160118_1.mo b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg160118_1.mo
index 4ba375eecf8..989c0e92237 100644
--- a/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg160118_1.mo
+++ b/Buildings/Fluid/FixedResistances/Validation/PlugFlowPipes/Data/PipeDataULg160118_1.mo
@@ -34,7 +34,7 @@ First implementation.
This data record contains the experimental data from the
long test bench carried out at the University of Liège.
-See
+See
Buildings.Fluid.FixedResistances.Validation.PlugFlowPipes.Data.BaseClasses.PipeDataULg
for more information.
diff --git a/Buildings/Fluid/HeatExchangers/CoolingTowers/YorkCalc.mo b/Buildings/Fluid/HeatExchangers/CoolingTowers/YorkCalc.mo
index 62c7588858b..0711fa30d9b 100644
--- a/Buildings/Fluid/HeatExchangers/CoolingTowers/YorkCalc.mo
+++ b/Buildings/Fluid/HeatExchangers/CoolingTowers/YorkCalc.mo
@@ -260,7 +260,7 @@ control law to compute the input signal y
.
Assumptions and limitations
This model requires a medium that has the same computation of the enthalpy as
-
+
Buildings.Media.Water,
which computes
diff --git a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/DoubleSpeed/Generic.mo b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/DoubleSpeed/Generic.mo
index 0ffcd8ae2d2..719e1b7ff9b 100644
--- a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/DoubleSpeed/Generic.mo
+++ b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/DoubleSpeed/Generic.mo
@@ -9,7 +9,7 @@ record Generic "Generic data record for DoubleSpeed DXCoils"
This record is used as a template for performance data
for the air source DX coils
-
+
Buildings.Fluid.HeatExchangers.DXCoils.AirSource.MultiStage with double speed.
",
diff --git a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/Generic/BaseClasses/package.mo b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/Generic/BaseClasses/package.mo
index fffce7b2a48..48b8c8655a5 100644
--- a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/Generic/BaseClasses/package.mo
+++ b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/Generic/BaseClasses/package.mo
@@ -7,10 +7,10 @@ package BaseClasses "Package with base classes for performance data"
This package contains performance curves for the cooling capacity and the EIR
of air source DX cooling coils.
For performance data of specific air source DX cooling coils, see the packages
-
+
Buildings.Fluid.HeatExchangers.DXCoils.AirSource.Data.SingleSpeed
and
-
+
Buildings.Fluid.HeatExchangers.DXCoils.AirSource.Data.DoubleSpeed.
diff --git a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/Generic/package.mo b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/Generic/package.mo
index 1ab519c0633..322bcd21a38 100644
--- a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/Generic/package.mo
+++ b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/Generic/package.mo
@@ -7,10 +7,10 @@ package Generic "Package with generic performance curves"
This package contains performance curves for the cooling capacity and the EIR
of air source DX cooling coils.
For performance data of specific air source DX cooling coils, see the packages
-
+
Buildings.Fluid.HeatExchangers.DXCoils.AirSource.Data.SingleSpeed
and
-
+
Buildings.Fluid.HeatExchangers.DXCoils.AirSource.Data.DoubleSpeed.
diff --git a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/SingleSpeed/Generic.mo b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/SingleSpeed/Generic.mo
index 55d6af71a5f..c72b27e1391 100644
--- a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/SingleSpeed/Generic.mo
+++ b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Data/SingleSpeed/Generic.mo
@@ -10,7 +10,7 @@ record Generic "Generic data record for SingleSpeed DXCoils"
This record is used as a template for performance data
for SingleSpeed DXCoils
-
+
Buildings.Fluid.HeatExchangers.DXCoils.AirSource.SingleSpeed.
",
diff --git a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Examples/PerformanceCurves/package.mo b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Examples/PerformanceCurves/package.mo
index 1515949eb3f..19ee6711ddb 100644
--- a/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Examples/PerformanceCurves/package.mo
+++ b/Buildings/Fluid/HeatExchangers/DXCoils/AirSource/Examples/PerformanceCurves/package.mo
@@ -11,10 +11,10 @@ of air source DX cooling coils that are used in the examples.
For performance data of specific air source DX cooling coils, see the packages
-
+
Buildings.Fluid.HeatExchangers.DXCoils.AirSource.Data.SingleSpeed
and
-
+
Buildings.Fluid.HeatExchangers.DXCoils.AirSource.Data.DoubleSpeed.
diff --git a/Buildings/Fluid/HeatExchangers/PrescribedOutlet.mo b/Buildings/Fluid/HeatExchangers/PrescribedOutlet.mo
index f9e2f0fde80..07655c618c5 100644
--- a/Buildings/Fluid/HeatExchangers/PrescribedOutlet.mo
+++ b/Buildings/Fluid/HeatExchangers/PrescribedOutlet.mo
@@ -210,7 +210,7 @@ Note that for use_TSet = false
, the enthalpy of the leaving fluid
will not be changed, even if moisture is added. The enthalpy added (or removed)
by the change in humidity is neglected. To properly account for change in enthalpy
due to humidification, use instead
-
+
Buildings.Fluid.Humidifiers.SprayAirWasher_X.
Validation
diff --git a/Buildings/Fluid/HeatExchangers/RadiantSlabs/ParallelCircuitsSlab.mo b/Buildings/Fluid/HeatExchangers/RadiantSlabs/ParallelCircuitsSlab.mo
index fd0f1b62a23..ed00417a9bd 100644
--- a/Buildings/Fluid/HeatExchangers/RadiantSlabs/ParallelCircuitsSlab.mo
+++ b/Buildings/Fluid/HeatExchangers/RadiantSlabs/ParallelCircuitsSlab.mo
@@ -195,7 +195,7 @@ equation
This is a model of a radiant slab with pipes or a capillary heat exchanger
embedded in the construction.
The model is a composition of multiple models of
-
+
Buildings.Fluid.HeatExchangers.RadiantSlabs.SingleCircuitSlab
that are arranged in a parallel.
@@ -207,7 +207,7 @@ port variables for the heat port at the two surfaces, and for the flow inlet and
A typical model application is as follows: Suppose a large room has a radiant slab with two parallel circuits
with the same pipe spacing and pipe length. Then, rather than using two instances of
-
+
Buildings.Fluid.HeatExchangers.RadiantSlabs.SingleCircuitSlab,
this system can be modeled using one instance of this model in order to reduce computing effort.
See
@@ -217,10 +217,10 @@ that shows that the models give identical results.
Since this model is a parallel arrangment of nCir
models of
-
+
Buildings.Fluid.HeatExchangers.RadiantSlabs.SingleCircuitSlab,
we refer to
-
+
Buildings.Fluid.HeatExchangers.RadiantSlabs.SingleCircuitSlab
for the model documentation.
diff --git a/Buildings/Fluid/HeatPumps/BaseClasses/EquationFitReversible.mo b/Buildings/Fluid/HeatPumps/BaseClasses/EquationFitReversible.mo
index cab08c0eda1..03d19d1c644 100644
--- a/Buildings/Fluid/HeatPumps/BaseClasses/EquationFitReversible.mo
+++ b/Buildings/Fluid/HeatPumps/BaseClasses/EquationFitReversible.mo
@@ -142,7 +142,7 @@ annotation (Icon(coordinateSystem(preserveAspectRatio=false)),
Documentation(info="
Block that implements the equation fit method for the reverse heat pump model
-
+
Buildings.Fluid.HeatPumps.EquationFitReversible.
",
diff --git a/Buildings/Fluid/HeatPumps/BaseClasses/Validation/EquationFitReversible.mo b/Buildings/Fluid/HeatPumps/BaseClasses/Validation/EquationFitReversible.mo
index bbb724a9b0c..0798adf1d0d 100644
--- a/Buildings/Fluid/HeatPumps/BaseClasses/Validation/EquationFitReversible.mo
+++ b/Buildings/Fluid/HeatPumps/BaseClasses/Validation/EquationFitReversible.mo
@@ -88,9 +88,9 @@ equation
Documentation(info="
This model implements a validation of the block
-
+
Buildings.Fluid.HeatPumps.BaseClasses.EquationFitReversible
-that applies the equation fit method used for
+that applies the equation fit method used for
Buildings.Fluid.HeatPumps.EquationFitReversible.
", revisions="
diff --git a/Buildings/Fluid/HeatPumps/Data/BaseClasses/package.mo b/Buildings/Fluid/HeatPumps/Data/BaseClasses/package.mo
index f7a4bb0db46..7b5dd923167 100644
--- a/Buildings/Fluid/HeatPumps/Data/BaseClasses/package.mo
+++ b/Buildings/Fluid/HeatPumps/Data/BaseClasses/package.mo
@@ -6,7 +6,7 @@ package BaseClasses "Base classes for package Data"
Documentation(info="
This package contains the common parameters that are used
to specify the heat pump models in
-
+
Buildings.Fluid.HeatPumps.
", revisions="
diff --git a/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/BaseClasses/package.mo b/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/BaseClasses/package.mo
index 6bfb56dcfb8..36ec03b4092 100644
--- a/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/BaseClasses/package.mo
+++ b/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/BaseClasses/package.mo
@@ -6,7 +6,7 @@ package BaseClasses "Base classes for package Data"
Documentation(info="
This package contains the common parameters that are used
to specify the heat pump models in
-
+
Buildings.Fluid.HeatPumps.Data.EquationFitReversible.
", revisions="
diff --git a/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/Generic.mo b/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/Generic.mo
index cfd9ea435eb..8fd02bad276 100644
--- a/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/Generic.mo
+++ b/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/Generic.mo
@@ -24,7 +24,7 @@ Documentation(info="
This record is used as a template for performance data
for the heat pump model
-
+
Buildings.Fluid.HeatPumps.EquationFitReversible.
", revisions="
diff --git a/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/package.mo b/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/package.mo
index fb66066331f..8b160b984c9 100644
--- a/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/package.mo
+++ b/Buildings/Fluid/HeatPumps/Data/EquationFitReversible/package.mo
@@ -6,7 +6,7 @@ annotation(preferredView="info",
Documentation(info="
Package with performance data for reverse water to water heat pump model
-
+
Buildings.Fluid.HeatPumps.EquationFitReversible.
",
diff --git a/Buildings/Fluid/HeatPumps/EquationFitReversible.mo b/Buildings/Fluid/HeatPumps/EquationFitReversible.mo
index 4ce860381bd..d12aec66415 100644
--- a/Buildings/Fluid/HeatPumps/EquationFitReversible.mo
+++ b/Buildings/Fluid/HeatPumps/EquationFitReversible.mo
@@ -288,7 +288,7 @@ The input TSet
is the set point for the leaving fluid temperature a
The heating and cooling performance coefficients are stored in the data record per
and are available from
-
+
Buildings.Fluid.HeatPumps.Data.EquationFitReversible.
diff --git a/Buildings/Fluid/HeatPumps/Validation/EquationFitReversible_EnergyPlus.mo b/Buildings/Fluid/HeatPumps/Validation/EquationFitReversible_EnergyPlus.mo
index 9912b24f40c..b359197e653 100644
--- a/Buildings/Fluid/HeatPumps/Validation/EquationFitReversible_EnergyPlus.mo
+++ b/Buildings/Fluid/HeatPumps/Validation/EquationFitReversible_EnergyPlus.mo
@@ -121,7 +121,7 @@ equation
Documentation(info="
This model implements a comparative model validation of
-
+
Buildings.Fluid.HeatPumps.EquationFitReversible
against results obtained using EnergyPlus 9.1.
diff --git a/Buildings/Fluid/Interfaces/ConservationEquation.mo b/Buildings/Fluid/Interfaces/ConservationEquation.mo
index d5b2e453ce9..09d689eaa63 100644
--- a/Buildings/Fluid/Interfaces/ConservationEquation.mo
+++ b/Buildings/Fluid/Interfaces/ConservationEquation.mo
@@ -668,7 +668,7 @@ Removed the option to use h_start
, as this
is not needed for building simulation.
Also removed the reference to Modelica.Fluid.System
.
Moved parameters and medium to
-
+
Buildings.Fluid.Interfaces.LumpedVolumeDeclarations.
-
diff --git a/Buildings/Fluid/Interfaces/FourPortHeatMassExchanger.mo b/Buildings/Fluid/Interfaces/FourPortHeatMassExchanger.mo
index b3487609ec3..2f61a25a89a 100644
--- a/Buildings/Fluid/Interfaces/FourPortHeatMassExchanger.mo
+++ b/Buildings/Fluid/Interfaces/FourPortHeatMassExchanger.mo
@@ -205,7 +205,7 @@ The model can be used as-is, although there will be no heat or mass transfer
between the two fluid streams.
To add heat transfer, heat flow can be added to the heat port of the two volumes.
See for example
-
+
Buildings.Fluid.Chillers.Carnot_y.
To add moisture input into (or moisture output from) volume
vol2
,
the model can be replaced with
diff --git a/Buildings/Fluid/MixingVolumes/BaseClasses/PartialMixingVolume.mo b/Buildings/Fluid/MixingVolumes/BaseClasses/PartialMixingVolume.mo
index 484fbe9a2c6..13012ec407a 100644
--- a/Buildings/Fluid/MixingVolumes/BaseClasses/PartialMixingVolume.mo
+++ b/Buildings/Fluid/MixingVolumes/BaseClasses/PartialMixingVolume.mo
@@ -506,7 +506,7 @@ as a state. See ticket Dynasim #13596.
-
July 26, 2011 by Michael Wetter:
Revised model to use new declarations from
-
+
Buildings.Fluid.Interfaces.LumpedVolumeDeclarations.
-
diff --git a/Buildings/Fluid/MixingVolumes/MixingVolume.mo b/Buildings/Fluid/MixingVolumes/MixingVolume.mo
index dfa3353a14e..de83f7dff9d 100644
--- a/Buildings/Fluid/MixingVolumes/MixingVolume.mo
+++ b/Buildings/Fluid/MixingVolumes/MixingVolume.mo
@@ -197,7 +197,7 @@ as a state. See ticket Dynasim #13596.
-
July 26, 2011 by Michael Wetter:
Revised model to use new declarations from
-
+
Buildings.Fluid.Interfaces.LumpedVolumeDeclarations.
-
diff --git a/Buildings/Fluid/Movers/BaseClasses/Euler/package.mo b/Buildings/Fluid/Movers/BaseClasses/Euler/package.mo
index 9a783b58540..9c0ef6d51a0 100644
--- a/Buildings/Fluid/Movers/BaseClasses/Euler/package.mo
+++ b/Buildings/Fluid/Movers/BaseClasses/Euler/package.mo
@@ -15,7 +15,7 @@ Buildings.Fluid.Movers.BaseClasses.Euler.correlation.
-
When curves of power and pressure against flow rate is available,
the function
-
+
Buildings.Fluid.Movers.BaseClasses.Euler.getPeak
can identify the peak operating condition from them.
This is useful comparing power computation results
@@ -25,11 +25,11 @@ against other methods.
The peak operating condition (where the efficiency η is
at its maximum) which is used by the correlation is stored in an instance
of the record
-
+
Buildings.Fluid.Movers.BaseClasses.Euler.peak.
-
-
+
Buildings.Fluid.Movers.BaseClasses.FlowMachineInterface
uses the peak values and the correlation to generate a power curve against
volumetric flow rate. This estimated power curve is used in place of the
diff --git a/Buildings/Fluid/Movers/BaseClasses/Types.mo b/Buildings/Fluid/Movers/BaseClasses/Types.mo
index 769872204a0..bc658ebb2df 100644
--- a/Buildings/Fluid/Movers/BaseClasses/Types.mo
+++ b/Buildings/Fluid/Movers/BaseClasses/Types.mo
@@ -19,7 +19,7 @@ package Types "Package with type definitions"
annotation (Documentation(info="
Enumeration to specify the calculation of the hydraulic efficiency.
-See Buildings.Fluid.Movers.UsersGuide
+See Buildings.Fluid.Movers.UsersGuide
for instructions.
", revisions="
@@ -44,7 +44,7 @@ First implementation. This is for
annotation (Documentation(info="
Enumeration to specify the calculation of the motor efficiency.
-See Buildings.Fluid.Movers.UsersGuide
+See Buildings.Fluid.Movers.UsersGuide
for instructions.
", revisions="
diff --git a/Buildings/Fluid/Movers/UsersGuide.mo b/Buildings/Fluid/Movers/UsersGuide.mo
index b368230fa63..5886126dad6 100644
--- a/Buildings/Fluid/Movers/UsersGuide.mo
+++ b/Buildings/Fluid/Movers/UsersGuide.mo
@@ -353,7 +353,7 @@ to be enabled and a differential pressure measurement
must be connected to
the pump input dpMea
.
This functionality is demonstrated in
-
+
Buildings.Fluid.Movers.Validation.FlowControlled_dpSystem.
diff --git a/Buildings/Fluid/Sources/Outside_CpLowRise.mo b/Buildings/Fluid/Sources/Outside_CpLowRise.mo
index e336b9b68d8..8fbefe175b0 100644
--- a/Buildings/Fluid/Sources/Outside_CpLowRise.mo
+++ b/Buildings/Fluid/Sources/Outside_CpLowRise.mo
@@ -119,7 +119,7 @@ where
-This model differs from
+This model differs from
Buildings.Fluid.Sources.Outside_CpData by the calculation of the wind pressure coefficient Cp,act.
The wind pressure coefficient is defined by an equation in stead of a user-defined table.
This model is only suited for low-rise rectangular buildings.
diff --git a/Buildings/Fluid/Storage/BaseClasses/IndirectTankHeatExchanger.mo b/Buildings/Fluid/Storage/BaseClasses/IndirectTankHeatExchanger.mo
index 226269838ea..7d3f3183276 100644
--- a/Buildings/Fluid/Storage/BaseClasses/IndirectTankHeatExchanger.mo
+++ b/Buildings/Fluid/Storage/BaseClasses/IndirectTankHeatExchanger.mo
@@ -285,9 +285,9 @@ equation
the heat exchanger, and convection from the heat exchanger to the surrounding fluid.
- The model is based on
+ The model is based on
Buildings.Fluid.HeatExchangers.BaseClasses.HACoilInside and
-
+
Buildings.Fluid.HeatExchangers.BaseClasses.HANaturalCylinder.
diff --git a/Buildings/Fluid/Storage/ExpansionVessel.mo b/Buildings/Fluid/Storage/ExpansionVessel.mo
index 4652f2ee979..87a78309456 100644
--- a/Buildings/Fluid/Storage/ExpansionVessel.mo
+++ b/Buildings/Fluid/Storage/ExpansionVessel.mo
@@ -139,7 +139,7 @@ setting the stateSelect
attribute leads to smaller systems of equat
-
July 26, 2011 by Michael Wetter:
Revised model to use new declarations from
-
+
Buildings.Fluid.Interfaces.LumpedVolumeDeclarations.
-
diff --git a/Buildings/Fluid/Storage/Ice/BaseClasses/Examples/NormalizedHeatFlowRate.mo b/Buildings/Fluid/Storage/Ice/BaseClasses/Examples/NormalizedHeatFlowRate.mo
index edf0055cf40..d6d58e0c22e 100644
--- a/Buildings/Fluid/Storage/Ice/BaseClasses/Examples/NormalizedHeatFlowRate.mo
+++ b/Buildings/Fluid/Storage/Ice/BaseClasses/Examples/NormalizedHeatFlowRate.mo
@@ -61,7 +61,7 @@ equation
info="
This example is to validate the
-
+
Buildings.Fluid.Storage.Ice.BaseClasses.NormalizedHeatFlowRate.
"));
diff --git a/Buildings/Fluid/Storage/Ice/BaseClasses/Tank.mo b/Buildings/Fluid/Storage/Ice/BaseClasses/Tank.mo
index fd82b745154..8ba1f8b7d08 100644
--- a/Buildings/Fluid/Storage/Ice/BaseClasses/Tank.mo
+++ b/Buildings/Fluid/Storage/Ice/BaseClasses/Tank.mo
@@ -137,7 +137,7 @@ and that computes the state of charge of the tank.
See
-
+
Buildings.Fluid.Storage.Ice.Tank
for the implemented equations.
diff --git a/Buildings/Fluid/Storage/Ice/Data/Tank/Generic.mo b/Buildings/Fluid/Storage/Ice/Data/Tank/Generic.mo
index 5ee92ca0819..da57a45db78 100644
--- a/Buildings/Fluid/Storage/Ice/Data/Tank/Generic.mo
+++ b/Buildings/Fluid/Storage/Ice/Data/Tank/Generic.mo
@@ -30,7 +30,7 @@ First implementation.
Performance data for ice tank charging and discharging curves.
See
-Buildings.Fluid.Storage.Ice.Tank
+Buildings.Fluid.Storage.Ice.Tank
for the definition of the charging and discharging coefficients.
"));
diff --git a/Buildings/Fluid/Storage/Ice/Data/Tank/package.mo b/Buildings/Fluid/Storage/Ice/Data/Tank/package.mo
index 2cd8b9b78cd..f1a66ad2e8f 100644
--- a/Buildings/Fluid/Storage/Ice/Data/Tank/package.mo
+++ b/Buildings/Fluid/Storage/Ice/Data/Tank/package.mo
@@ -6,7 +6,7 @@ annotation (Documentation(info="
This package contains data records that characterize the performance of ice storage tanks.
See
-Buildings.Fluid.Storage.Ice.Tank
+Buildings.Fluid.Storage.Ice.Tank
for the definition of the charging and discharging coefficients.
"));
diff --git a/Buildings/Fluid/Storage/Ice/Validation/Tank.mo b/Buildings/Fluid/Storage/Ice/Validation/Tank.mo
index 153ea9c559b..75cb40a22bc 100644
--- a/Buildings/Fluid/Storage/Ice/Validation/Tank.mo
+++ b/Buildings/Fluid/Storage/Ice/Validation/Tank.mo
@@ -107,7 +107,7 @@ equation
"Simulate and Plot"),
Documentation(info="
-This example is to verify the ice tank model Buildings.Fluid.Storage.Ice.
+This example is to verify the ice tank model Buildings.Fluid.Storage.Ice.
", revisions="
diff --git a/Buildings/Fluid/Storage/UsersGuide.mo b/Buildings/Fluid/Storage/UsersGuide.mo
index e2d4bb4ffc0..580f0bd379d 100644
--- a/Buildings/Fluid/Storage/UsersGuide.mo
+++ b/Buildings/Fluid/Storage/UsersGuide.mo
@@ -172,7 +172,7 @@ as this seems to be the typical configuration.
The heat exchanger is implemented in
-
+
Buildings.Fluid.Storage.BaseClasses.IndirectTankHeatExchanger.
diff --git a/Buildings/HeatTransfer/Conduction/MultiLayer.mo b/Buildings/HeatTransfer/Conduction/MultiLayer.mo
index 4e3720fb5fe..a1b1761c661 100644
--- a/Buildings/HeatTransfer/Conduction/MultiLayer.mo
+++ b/Buildings/HeatTransfer/Conduction/MultiLayer.mo
@@ -111,7 +111,7 @@ equation
This is a model of a heat conductor with multiple material layers and energy storage.
The construction has at least one material layer, and each layer has
at least one temperature node. The layers are modeled using an instance of
-
+
Buildings.HeatTransfer.Conduction.SingleLayer.
See this model for an explanation of the equations that are applied to
each material layer.
diff --git a/Buildings/HeatTransfer/Conduction/SingleLayer.mo b/Buildings/HeatTransfer/Conduction/SingleLayer.mo
index 6c4ce9f5b07..b7fddbec6f7 100644
--- a/Buildings/HeatTransfer/Conduction/SingleLayer.mo
+++ b/Buildings/HeatTransfer/Conduction/SingleLayer.mo
@@ -350,7 +350,7 @@ in the middle of a control volume with length l=x/(material.nSta-2)
To build multi-layer constructions,
use
-
+
Buildings.HeatTransfer.Conduction.MultiLayer instead of this model.
Important parameters
diff --git a/Buildings/HeatTransfer/Data/Solids.mo b/Buildings/HeatTransfer/Data/Solids.mo
index cd588cbd262..5eeed216759 100644
--- a/Buildings/HeatTransfer/Data/Solids.mo
+++ b/Buildings/HeatTransfer/Data/Solids.mo
@@ -100,10 +100,10 @@ These material records automatically compute the spatial grid
that is used to compute transient heat conduction.
In building materials, the thermal diffusivity of adjacent layer materials can differ by an order of magnitude. If the spatial grid generation were not to account for the material properties, then the time rate of change of the different temperature nodes would be significantly different from each other.
Therefore, records in the packages
-
+
Buildings.HeatTransfer.Data.Solids
and
-
+
Buildings.HeatTransfer.Data.SolidsPCM
generate the spatial grid so that under the assumption of equal heat transfer, each node temperature has a similar time rate of change.
diff --git a/Buildings/Media/Examples/BaseClasses/FluidProperties.mo b/Buildings/Media/Examples/BaseClasses/FluidProperties.mo
index 9dddf9ca4e5..3aae6208e02 100644
--- a/Buildings/Media/Examples/BaseClasses/FluidProperties.mo
+++ b/Buildings/Media/Examples/BaseClasses/FluidProperties.mo
@@ -39,7 +39,7 @@ Changed type of T
from
Modelica.Units.SI.Temperature
to Medium.Temperature
.
Otherwise, it has a different start value than BaseProperties.T
, which
causes an error if
-
+
Buildings.Media.Examples.WaterProperties
is translated in pedantic mode.
This fixes
diff --git a/Buildings/Media/Examples/BaseClasses/PartialProperties.mo b/Buildings/Media/Examples/BaseClasses/PartialProperties.mo
index dab3f0f48e4..33b47ef083d 100644
--- a/Buildings/Media/Examples/BaseClasses/PartialProperties.mo
+++ b/Buildings/Media/Examples/BaseClasses/PartialProperties.mo
@@ -123,7 +123,7 @@ Changed type of T
from
Modelica.Units.SI.Temperature
to Medium.Temperature
.
Otherwise, it has a different start value than BaseProperties.T
, which
causes an error if
-
+
Buildings.Media.Examples.WaterProperties
is translated in pedantic mode.
This fixes
diff --git a/Buildings/Media/Water.mo b/Buildings/Media/Water.mo
index bfbfe68e65d..e246a118025 100644
--- a/Buildings/Media/Water.mo
+++ b/Buildings/Media/Water.mo
@@ -209,7 +209,7 @@ Changed type of BaseProperties.T
from
Modelica.Units.SI.Temperature
to Temperature
.
Otherwise, it has a different start value than Medium.T
, which
causes an error if
-
+
Buildings.Media.Examples.WaterProperties
is translated in pedantic mode.
This fixes
diff --git a/Buildings/Resources/bin/ConvertWeatherData.jar b/Buildings/Resources/bin/ConvertWeatherData.jar
index df0c3334627fc03b925c40095393ae49ea01f978..c274b3271f5f6e746ec2fb8735d8c634cb02ba1c 100644
GIT binary patch
delta 68
zcmdn%vDbqqz?+#xgn@&DgQ2=>B2PUNknFVvk*B5t$<2w3t%^W;@(U$r5T&bZ38FHT
K9YEA7<;ei{uos8`
delta 68
zcmdn%vDbqqz?+#xgn@&DgW*%hM4oykAlYjTB2P^PlA9A5TNQ!y
This package tests the coupled simulation of the model
-Buildings.ThermalZones.Detailed.CFD with the Fast Fluid Dynamics (FFD) program.
+Buildings.ThermalZones.Detailed.CFD with the Fast Fluid Dynamics (FFD) program.
Different cases with various boundary conditions are evaluated.
The models in this package do not represent realistic buildings, but
are rather designed to test the coupled simulation.
diff --git a/Buildings/ThermalZones/Detailed/UsersGuide.mo b/Buildings/ThermalZones/Detailed/UsersGuide.mo
index 1f6ec9cc6a1..7549dce8dfc 100644
--- a/Buildings/ThermalZones/Detailed/UsersGuide.mo
+++ b/Buildings/ThermalZones/Detailed/UsersGuide.mo
@@ -809,7 +809,7 @@ During the initialzation, the following data are sent from Modelica to CFD:
An array of strings where each element is the name of the surface,
as declared by
the user when instantiating the model
-Buildings.ThermalZones.Detailed.CFD.
+Buildings.ThermalZones.Detailed.CFD.
Let us call this array name
.
The orders of elements in this array are as follows:
diff --git a/Buildings/ThermalZones/Detailed/Validation/TestConditionalConstructions/package.mo b/Buildings/ThermalZones/Detailed/Validation/TestConditionalConstructions/package.mo
index fa3e05c2993..6efde472ac8 100644
--- a/Buildings/ThermalZones/Detailed/Validation/TestConditionalConstructions/package.mo
+++ b/Buildings/ThermalZones/Detailed/Validation/TestConditionalConstructions/package.mo
@@ -6,7 +6,7 @@ package TestConditionalConstructions "Package with models that verify whether co
annotation (preferredView="info",
Documentation(info="
The thermal zone model
-Buildings.ThermalZones.Detailed.MixedAir
+Buildings.ThermalZones.Detailed.MixedAir
allows the conditional declaration of constructions for
exterior walls without windows, for exterior walls with windows,
for partition walls, for interior surfaces,
diff --git a/Buildings/ThermalZones/EnergyPlus_9_6_0/OutputVariable.mo b/Buildings/ThermalZones/EnergyPlus_9_6_0/OutputVariable.mo
index b764d7aaddd..90fb3cb405c 100644
--- a/Buildings/ThermalZones/EnergyPlus_9_6_0/OutputVariable.mo
+++ b/Buildings/ThermalZones/EnergyPlus_9_6_0/OutputVariable.mo
@@ -178,7 +178,7 @@ Buildings.ThermalZones.EnergyPlus_9_6_0.OutputVariable TOut(
(Note that this variable could be read directly from the Modelica weather data bus,
which can be accessed from
-
+
Buildings.ThermalZones.EnergyPlus_9_6_0.Building.)
@@ -245,7 +245,7 @@ to the EnergyPlus idf-file. This will produce an EnergyPlus result data dictiona
In the table below, the name in the first column
must be used as the value for the parameter name
in instances of
-
+
Buildings.ThermalZones.EnergyPlus_9_6_0.OutputVariable.
diff --git a/Buildings/ThermalZones/EnergyPlus_9_6_0/ThermalZone.mo b/Buildings/ThermalZones/EnergyPlus_9_6_0/ThermalZone.mo
index be625bce0a5..1332b18b738 100644
--- a/Buildings/ThermalZones/EnergyPlus_9_6_0/ThermalZone.mo
+++ b/Buildings/ThermalZones/EnergyPlus_9_6_0/ThermalZone.mo
@@ -372,7 +372,7 @@ Model for a thermal zone that is implemented in EnergyPlus.
This model instantiates the FMU with the name idfName
and
connects to the thermal zone with name zoneName
.
The idfName
needs to be specified in an instance of
-
+
Buildings.ThermalZones.EnergyPlus_9_6_0.Building
that is named building
, and that is placed at this
or at a higher hierarchy-level of the model.
diff --git a/Buildings/ThermalZones/EnergyPlus_9_6_0/Validation/OutputVariable/NoOutputVariable.mo b/Buildings/ThermalZones/EnergyPlus_9_6_0/Validation/OutputVariable/NoOutputVariable.mo
index f509cef5620..c5eefae9a9a 100644
--- a/Buildings/ThermalZones/EnergyPlus_9_6_0/Validation/OutputVariable/NoOutputVariable.mo
+++ b/Buildings/ThermalZones/EnergyPlus_9_6_0/Validation/OutputVariable/NoOutputVariable.mo
@@ -18,7 +18,7 @@ This validation case tests whether Spawn works for an idf file that has no outpu
The model is identical to
-
+
Buildings.ThermalZones.EnergyPlus_9_6_0.Examples.SingleFamilyHouse.Unconditioned
except that it uses an idf file that has no output variables.
diff --git a/Buildings/ThermalZones/EnergyPlus_9_6_0/Validation/OutputVariable/OneEnvironmentOutputVariable.mo b/Buildings/ThermalZones/EnergyPlus_9_6_0/Validation/OutputVariable/OneEnvironmentOutputVariable.mo
index e50a3663367..aef80df1403 100644
--- a/Buildings/ThermalZones/EnergyPlus_9_6_0/Validation/OutputVariable/OneEnvironmentOutputVariable.mo
+++ b/Buildings/ThermalZones/EnergyPlus_9_6_0/Validation/OutputVariable/OneEnvironmentOutputVariable.mo
@@ -32,7 +32,7 @@ Simple test case for one building in which only an EnergyPlus output variable is
In this model, the site drybulb temperature is obtained from EnergyPlus.
Note that this variable could be read directly from the Modelica weather data bus,
which can be accessed from
-
+
Buildings.ThermalZones.EnergyPlus_9_6_0.Building.
", revisions="
diff --git a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomFourElements.mo b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomFourElements.mo
index 6780f9846ee..e5b0aaa25aa 100644
--- a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomFourElements.mo
+++ b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomFourElements.mo
@@ -288,13 +288,13 @@ equation
annotation (Line(points={{27,56},{40,56},{40,31},{43,31}}, color={0,0,127}));
annotation ( Documentation(info="
This example shows the application of
-
+
Buildings.ThermalZones.ReducedOrder.RC.FourElements
in combination with
-
+
Buildings.ThermalZones.ReducedOrder.EquivalentAirTemperature.VDI6007WithWindow
and
-
+
Buildings.ThermalZones.ReducedOrder.SolarGain.CorrectionGDoublePane.
Solar radiation on tilted surface is calculated using models of
Buildings. The thermal zone is a simple room defined in Guideline
diff --git a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomFourElementsTraceSubstance.mo b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomFourElementsTraceSubstance.mo
index a5e3c815dfc..2683ec8595e 100644
--- a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomFourElementsTraceSubstance.mo
+++ b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomFourElementsTraceSubstance.mo
@@ -65,14 +65,14 @@ equation
annotation ( Documentation(info="
This example shows the application of
-
+
Buildings.ThermalZones.ReducedOrder.RC.FourElements
considering a trace substance such as CO2
in combination with
-
+
Buildings.ThermalZones.ReducedOrder.EquivalentAirTemperature.VDI6007WithWindow
and
-
+
Buildings.ThermalZones.ReducedOrder.SolarGain.CorrectionGDoublePane.
Solar radiation on tilted surface is calculated using models of
Buildings. The thermal zone is a simple room defined in Guideline
diff --git a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomOneElement.mo b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomOneElement.mo
index 10c24fe8119..390c0b1198d 100644
--- a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomOneElement.mo
+++ b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomOneElement.mo
@@ -226,13 +226,13 @@ equation
0,127}));
annotation ( Documentation(info="
This example shows the application of
-
+
Buildings.ThermalZones.ReducedOrder.RC.OneElement
in combination with
-
+
Buildings.ThermalZones.ReducedOrder.EquivalentAirTemperature.VDI6007WithWindow
and
-
+
Buildings.ThermalZones.ReducedOrder.SolarGain.CorrectionGDoublePane.
Solar radiation on tilted surface is calculated using models of
Buildings. The thermal zone is a simple room defined in Guideline
diff --git a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomThreeElements.mo b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomThreeElements.mo
index 8eed3aa2e5e..fc1f49e213d 100644
--- a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomThreeElements.mo
+++ b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomThreeElements.mo
@@ -256,13 +256,13 @@ equation
annotation (Line(points={{27,64},{40,64},{40,31},{43,31}}, color={0,0,127}));
annotation ( Documentation(info="
This example shows the application of
-
+
Buildings.ThermalZones.ReducedOrder.RC.ThreeElements
in combination with
-
+
Buildings.ThermalZones.ReducedOrder.EquivalentAirTemperature.VDI6007WithWindow
and
-
+
Buildings.ThermalZones.ReducedOrder.SolarGain.CorrectionGDoublePane.
Solar radiation on tilted surface is calculated using models of
Buildings. The thermal zone is a simple room defined in Guideline
diff --git a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomTwoElements.mo b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomTwoElements.mo
index 9dc84bf9639..39fbc2844e4 100644
--- a/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomTwoElements.mo
+++ b/Buildings/ThermalZones/ReducedOrder/Examples/SimpleRoomTwoElements.mo
@@ -232,13 +232,13 @@ equation
0,127}));
annotation ( Documentation(info="
This example shows the application of
-
+
Buildings.ThermalZones.ReducedOrder.RC.TwoElements
in combination with
-
+
Buildings.ThermalZones.ReducedOrder.EquivalentAirTemperature.VDI6007WithWindow
and
-
+
Buildings.ThermalZones.ReducedOrder.SolarGain.CorrectionGDoublePane.
Solar radiation on tilted surface is calculated using models of
Buildings. The thermal zone is a simple room defined in Guideline
diff --git a/Buildings/ThermalZones/ReducedOrder/RC/BaseClasses/splitFacVal.mo b/Buildings/ThermalZones/ReducedOrder/RC/BaseClasses/splitFacVal.mo
index 49f1a1c0922..427cbdf41b8 100644
--- a/Buildings/ThermalZones/ReducedOrder/RC/BaseClasses/splitFacVal.mo
+++ b/Buildings/ThermalZones/ReducedOrder/RC/BaseClasses/splitFacVal.mo
@@ -50,7 +50,7 @@ algorithm
AArray
and each column for one orientation in
AExt
and AWin
. The function is used to
calculate the split factors for
-
+
Buildings.ThermalZones.ReducedOrder.RC.BaseClasses.ThermSplitter.
For internal gains, the calculation is:
diff --git a/Buildings/ThermalZones/ReducedOrder/RC/package.mo b/Buildings/ThermalZones/ReducedOrder/RC/package.mo
index 9ae5b31cd8a..3ef60c78b47 100644
--- a/Buildings/ThermalZones/ReducedOrder/RC/package.mo
+++ b/Buildings/ThermalZones/ReducedOrder/RC/package.mo
@@ -51,10 +51,10 @@ package RC "Package with reduced order thermal zones based on VDI 6007 Part 1"
Architecture
Each wall element uses either
-
+
Buildings.ThermalZones.ReducedOrder.RC.BaseClasses.ExteriorWall
or
-
+
Buildings.ThermalZones.ReducedOrder.RC.BaseClasses.InteriorWall
to describe heat conduction and storage within the wall, depending if the wall
contributes to heat transfer to the outdoor environment (exterior walls) or can
@@ -90,7 +90,7 @@ package RC "Package with reduced order thermal zones based on VDI 6007 Part 1"
The transmission of solar radiation through windows is split up into two parts.
One part is connected to the indoor radiative heat exchange mesh network using
a
-
+
Buildings.ThermalZones.ReducedOrder.RC.BaseClasses.ThermSplitter,
while the other part is directly linked to the convective network. The split
factor ratioWinConRad
is a window property and depends on the
@@ -156,7 +156,7 @@ package RC "Package with reduced order thermal zones based on VDI 6007 Part 1"
temperature and thus of area as well, assuming that the temperature of the
source is high compared to the wall surface temperatures.
By using a
-
+
Buildings.ThermalZones.ReducedOrder.RC.BaseClasses.ThermSplitter
that distributes the heat flow of the source over the walls according to their
area, we support this simplified approach. For solar radiation through windows,
@@ -164,7 +164,7 @@ package RC "Package with reduced order thermal zones based on VDI 6007 Part 1"
radiation is not taken into account for the distribution as such surfaces cannot
be hit by the particular radiation. This calculation is performed for each
orientation separately using
-
+
Buildings.ThermalZones.ReducedOrder.RC.BaseClasses.splitFacVal.
@@ -184,7 +184,7 @@ package RC "Package with reduced order thermal zones based on VDI 6007 Part 1"
The models in this package are typically used in combination with models from
the parent package
-
+
Buildings.ThermalZones.ReducedOrder.
A typical application is one building out of a large building stock for
which the heating and cooling power over a year in hourly time steps should be
diff --git a/Buildings/Types/Tilt/package.mo b/Buildings/Types/Tilt/package.mo
index 48a57d49f86..09f2909d792 100644
--- a/Buildings/Types/Tilt/package.mo
+++ b/Buildings/Types/Tilt/package.mo
@@ -17,7 +17,7 @@ For example, for a construction that is a floor, use
Note that a ceiling has a tilt of 0
, and also the solar collector models
in
-Buildings.Fluid.SolarCollectors
+Buildings.Fluid.SolarCollectors
require a tilt of 0
if they are facing straight upwards.
This is correct because
diff --git a/Buildings/Utilities/Plotters/Configuration.mo b/Buildings/Utilities/Plotters/Configuration.mo
index f4ec92f1cf9..6b59116e76a 100644
--- a/Buildings/Utilities/Plotters/Configuration.mo
+++ b/Buildings/Utilities/Plotters/Configuration.mo
@@ -92,7 +92,7 @@ Icon(coordinateSystem(preserveAspectRatio=false), graphics={
This block can be used to globally configure the parameters
for the blocks from the package
-Buildings.Utilities.Plotters.
+Buildings.Utilities.Plotters.
Use this block for example to set the same
plot file name and sampling time.
diff --git a/Buildings/Utilities/Plotters/Scatter.mo b/Buildings/Utilities/Plotters/Scatter.mo
index 44f681ebf7b..73a7d0bd5d7 100644
--- a/Buildings/Utilities/Plotters/Scatter.mo
+++ b/Buildings/Utilities/Plotters/Scatter.mo
@@ -55,7 +55,7 @@ initial algorithm
else "") +
"
};
-
+
Plotly.newPlot('" + insNam + "', data_" + insNam + ", layout_" + insNam + ");
");
@@ -340,7 +340,7 @@ There can be multiple instances of this block.
If they share the same value for fileName
,
then they will add their plot to the same output file.
For convenience, we recommend to drag an instance of
-Buildings.Utilities.Plotters.Configuration
+Buildings.Utilities.Plotters.Configuration
at the top-level of your model. This instance can then
be used to globally set the fileName
and
the samplePeriod
for all plotters.
diff --git a/Buildings/Utilities/Plotters/TimeSeries.mo b/Buildings/Utilities/Plotters/TimeSeries.mo
index c5085dcf79c..aa45ffc9742 100644
--- a/Buildings/Utilities/Plotters/TimeSeries.mo
+++ b/Buildings/Utilities/Plotters/TimeSeries.mo
@@ -115,7 +115,7 @@ There can be multiple instances of this block.
If they share the same value for fileName
,
then they will add their plot to the same output file.
For convenience, we recommend to drag an instance of
-Buildings.Utilities.Plotters.Configuration
+Buildings.Utilities.Plotters.Configuration
at the top-level of your model. This instance can then
be used to globally set the fileName
and
the samplePeriod
for all plotters.
diff --git a/Buildings/package.mo b/Buildings/package.mo
index 2397ee248e8..2046b6be30e 100644
--- a/Buildings/package.mo
+++ b/Buildings/package.mo
@@ -117,7 +117,7 @@ Buildings.Controls.OBC.ASHRAE.G36.TerminalUnits.Reheat.Controller if the zon
-
Suffix
_flow
for a flow variable, such as Q_flow
, m_flow
and V_flow
.
-See
+See
Buildings.Fluid.Sensors.VolumeFlowRate.
-
diff --git a/bin/verifyFiles.py b/bin/verifyFiles.py
index 9bf43f90eaa..d58dc6759ec 100755
--- a/bin/verifyFiles.py
+++ b/bin/verifyFiles.py
@@ -44,6 +44,7 @@
"modelica://BuildingSystems",
"modelica://IDEAS",
"modelica://https://",
+ r'href=\"Buildings.',
">>>>>>",
"<<<<<<"]
@@ -114,17 +115,11 @@ def reportErrorIfContainsRegExp(fileName, listOfStrings):
for string in listOfStrings:
match = re.search(string, filTex, re.I)
if match is not None:
- cou = match.group().count('\n')
- if cou > 1:
- # Create short message as the match can be many lines long.
- msg = match.group().split('\n')[0] + "..."
- else:
- msg = match.group()
reportError("File '"
+ getRelativeMoPath(fileName)
+ "' contains invalid string regular expression '"
+ string + "' in '"
- + msg + "'.")
+ + match.group() + "'.")
#########################################################
def reportErrorIfMissing(fileName, listOfStrings):