journal article Feb 01, 2015

Developing a physical BIM library for building thermal energy simulation

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References
39
[1]
Crawley "Contrasting the capabilities of building energy performance simulation programs" (2005)
[2]
Attia "State of the art of existing early design simulation tools for net zero energy" (2011)
[3]
Haberl "SIMBUILD survey: academic use of simulation software" (2008)
[4]
Maile "Building energy performance simulation tools — a life-cycle and interoperable perspective" (2007)
[5]
Aksamija "BIM-based building performance analysis: evaluation and simulation of design decisions" (2012)
[6]
Attia "“Architect friendly”: a comparison of ten different building performance simulation tools" (2009)
[7]
Clarke (2001)
[8]
Dong "A comparative study of the IFC and gbXML informational infrastructure for data exchange in computational design support environments" (2007)
[9]
"State-of-the-art of digital tools used by architects for solar design" (2010)
[10]
U.S. Department of Energy (U.S. DOE)
[11]
NREL (National Renewable Energy Laboratory)
[12]
Lawrence Berkeley National Laboratory, Simergy
[13]
O'Donnell "SimModel: a domain data model for whole building energy simulation" (2011)
[14]
Kumar (2008)
[15]
Autodesk
[16]
General Services Administration
[17]
Bazjanac "IFC BIM-based methodology for semi-automated building energy performance simulation" (2008)
[18]
O'Donnell "Transforming BIM to BEM: generation of building geometry for the NASA Ames sustainability base BIM" (2013)
[19]
Bazjanac "Reduction, simplification, translation and interpretation in the exchange of model data" (2007)
[20]
Clayton (2013)
[21]
Maile "BIM — geometry modelling guidelines for energy performance simulation" (2013)
[22]
Bahar "A thermal simulation tool for building and its interoperability through the Building Information Modeling (BIM) platform" Buildings (2013) 10.3390/buildings3020380
[23]
Wetter "Modelica-based modeling and simulation to support research and development in building energy and control systems" J. Build. Perform. Simul. (2009) 10.1080/19401490902818259
[24]
Yan "Interfacing BIM with building thermal and daylighting modeling" (2013)
[25]
Eastman (2011)
[26]
Sacks "Parametric 3D modeling in building construction with examples from precast concrete" Autom. Constr. (2004) 10.1016/s0926-5805(03)00043-8
[27]
Fritzson (2004)
[28]
Dassault Systèmes, Dymola
[29]
Nouidui "Validation and application of the room model of the Modelica Buildings library" (2012)
[30]
Wetter "Modeling of heat transfer in rooms in the Modelica ‘Buildings’ library" (2011)
[31]
Wetter "Modelica versus TRNSYS — a comparison between an equation-based and a procedural modeling language for building energy simulation" (2006)
[32]
Venugopal "Semantics of model views for information exchanges using the industry foundation class schema" Adv. Eng. Inform. (2012) 10.1016/j.aei.2012.01.005
[33]
See
[34]
Eastman "A guide for development and preparation of a national BIM exchange standard" (2011)
[35]
Rose "An Algorithm to generate space boundaries for building energy simulation" Eng. Comput. (2013)
[36]
Woodfield "The impedance mismatch between conceptual models and implementation environments" (1997)
[37]
Wetter "Multizone airflow model in Modelica" (2006)
[38]
Wetter "Modelica Buildings library" J. Build. Perform. Simul. (2014) 10.1080/19401493.2013.765506
[39]
Jeong "Visualization of building energy performance in building information models" (2013)
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References
Details
Published
Feb 01, 2015
Vol/Issue
50
Pages
16-28
License
View
Funding
National Science Foundation Award: 0967446
Cite This Article
Jong Bum Kim, WoonSeong Jeong, Mark J. Clayton, et al. (2015). Developing a physical BIM library for building thermal energy simulation. Automation in Construction, 50, 16-28. https://doi.org/10.1016/j.autcon.2014.10.011