The Buildings
library is a free open-source library for modeling of building energy and control systems.
Many models are based on models from the package
Modelica.Fluid and use
the same ports to ensure compatibility with models from that library.
The web page for this library is http://simulationresearch.lbl.gov/modelica. We welcome contributions from different users to further advance this library, whether it is through collaborative model development, through model use and testing or through requirements definition or by providing feedback regarding the model applicability to solve specific problems.
The library has the following User's Guides:
General information about the use of the Buildings
library
is available at
http://simulationresearch.lbl.gov/modelica/userGuide.
This web site covers general information that is not specific to the
use of individual sublibraries or models.
Discussed topics include
how to get started, best practices, how to post-process results using Python,
work-around for problems and how to develop models.
Some of the main sublibraries have their own User's Guides that can be accessed by the links below. These User's Guides are discussing items that are specific to the individual libraries.
Airflow.Multizone | Library for multizone airflow and contaminant transport. |
BoundaryConditions | Library for computing boundary conditions, such as solar irradiation. |
BoundaryConditions.WeatherData | Library for reading weather data. |
Fluid | Library for one-dimensional fluid in piping networks with heat exchangers, valves, etc. |
Fluid.Actuators | Library with valves and air dampers. |
Fluid.HeatExchangers.DXCoils | Library with direct evaporative cooling coils. |
Fluid.Movers | Library with fans and pumps. |
Fluid.Sensors | Library with sensors. |
Fluid.Interfaces | Base models that can be used by developers to implement new models. |
HeatTransfer | Library heat transfer in building constructions. |
There is also a tutorial available at Buildings.Examples.Tutorial. The tutorial contains step by step instructions for how to build system models.
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Name | Description |
---|---|
Conventions | Conventions |
ReleaseNotes | Release notes |
Contact | Contact |
Acknowledgements | Acknowledgements |
License | Modelica License 2 |
Copyright | Copyright |
This library follows the conventions of the Modelica Standard Library, which are as follows:
Note, in the html documentation of any Modelica library, the headings "h1, h2, h3" should not be used, because they are utilized from the automatically generated documentation/headings. Additional headings in the html documentation should start with "h4".
In the Modelica package the following conventions are used:
The Buildings
library uses the following conventions
in addition to the ones of the Modelica Standard Library:
X
denotes mass fraction per total mass.
x
denotes mass fraction per mass of dry air.
z_xy
denotes that the function or block has output
z
and inputs x
and y
.
pW
denotes water vapor pressure, TDewPoi
denotes dew point temperature, TWetBul
denotes wet bulb temperature,
and TDryBul
(or simply T
) denotes dry bulb temperature.
HeatTransfer
.
T
for temperature and p
for pressure, or a combination of the first three
characters of a word, such as higPreSetPoi
for high pressure set point.
Beta
.
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The development of the Buildings library is organized by
Michael Wetter
Lawrence Berkeley National Laboratory (LBNL)
One Cyclotron Road
Bldg. 90-3147
Berkeley, CA 94720
USA
email: MWetter@lbl.gov
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The development of this library was supported
The package for multizone airflow modeling and the model for thermal comfort was contributed by the United Technologies Research Center, which also contributed to the validation of the room heat transfer model.
We thank Dietmar Winkler from Telemark University College for the various feedback that helped improve the organization and structure of the library.
The following people have directly contributed to the implementation of the Buildings library (many others have contributed by other means than model implementation):
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