1,453
Views
31
CrossRef citations to date
0
Altmetric
Original Articles

A framework to integrate object-oriented physical modelling with building information modelling for building thermal simulation

, , , &
Pages 50-69 | Received 04 Mar 2014, Accepted 27 Nov 2014, Published online: 19 Jan 2015

References

  • Aksamija, A. 2010. “Analysis and Computation: Sustainable Design in Practice.” Design Principles and Practices: An International Journal 4 (4): 291–314.
  • Aksamija, A. 2012. “BIM-Based Building Performance Analysis: Evaluation and Simulation of Design Decisions.” Proceedings of the 2012 ACEEE summer study on energy efficiency in buildings, Pacific Grove, CA.
  • ASHRAE. 2010. ASHRAE Standard. Standard Method of Test for the Evaluation of Building Energy Analysis Computer Programs (ANSI/ASHRAE Standard 140-2007). Atlanta, GA: American Society of Heating, Refrigerating and Air-Conditioning Engineers.
  • Attia, S. 2011. State of the Art of Existing Early Design Simulation Tools for Net Zero Energy Buildings: A Comparison of Ten Tools. Technical Report. Louvain La Neuve, Belgium: Université catholique de Louvain.
  • Attia, S., L. Beltrán, A. D. Herde, and J. Hensen. 2009. “Architect Friendly: A Comparison of Ten Different Building Performance Simulation Tools.” Proceedings of building simulation conference, Glasgow, Scotland, 204–211.
  • Autodesk Inc. 2014a. “Ecotect Analysis – Sustainable Building Design Software – Autodesk.” Accessed May 12. http://usa.autodesk.com/ecotect-analysis
  • Autodesk Inc. 2014b. “Revit Architecture – Building Design Software – Autodesk.” Accessed May 12. http://usa.autodesk.com/revit-architecture
  • Bazjanac, V. 2008. IFC BIM-Based Methodology for Semi-Automated Building Energy Performance Simulation. Berkeley, CA: Lawrence Berkeley National Laboratory.
  • Bazjanac, V., and A. Kiviniemi. 2007. “Reduction, Simplification, Translation and Interpretation in the Exchange of Model Data.” In Proceedings of the 24th W78 Conference Maribor 2007, edited by D. Rebolj, 163–168. Maribor, Slovenia: University of Maribor & CIB & EG-ICE.
  • Bentley System. 2014. “Building Information Modeling – Bentley Architecture.” Accessed May 12. http://www.bentley.com/en-US/Products/Bentley+Architecture
  • Clarke, J. 2001. Energy Simulation in Building Design. Oxford, UK: Butterworth Heinemann.
  • Clayton, M., J. Haberl, W. Yan, S. Kota, F. Farias, W. Jeong, J. B. Kim, and J. L. Bermudez Alcocer. 2013. “Development of a Reference Building Information Model (BIM) for Thermal Model Compliance Testing.” RP-1468, ASHRAE.
  • Crawley, D. B., J. W. Hand, M. Kummert, and B. T. Griffith. 2008. “Contrasting the Capabilities of Building Energy Performance Simulation Programs.” Building and Environment 43 (4): 661–73. doi: 10.1016/j.buildenv.2006.10.027
  • Crawley D. B., L. K. Lawrie, F. C. Winkelmann, W. F. Buhl, Y. J. Huang, C. O. Pedersen, R. K. Strand, et al. 2001. “EnergyPlus: Creating a New-Generation Building Energy Simulation Program.” Energy and Buildings 33 (4): 443–457. doi: 10.1016/S0378-7788(00)00114-6
  • Dassault Systèmes. 2014. “Multi-Engineering Modeling and Simulation – Dymola – CATIA – Dassault Systèmes.” Accessed May 1. http://www.3ds.com/products-services/catia/portfolio/dymola/overview
  • DesignBuilder Software. 2014. “DesignBuilder – Building Design, Simulation and Visualisation – Building Simulation … Made Easy.” Accessed May 12. http://www.designbuilder.co.uk
  • Eastman, C. M., P. Teicholz, R. Sacks, and K. Liston. 2008. BIM Handbook: A Guide to Building Information Modeling for Owners, Managers, Designers, Engineers and Contractors. Hoboken, NJ: Wiley.
  • Fritzson, P. 2010. Principles of Object-oriented Modeling and Simulation with Modelica 2.1. Piscataway, NJ: IEEE Press.
  • Fritzson, P., and P. Bunus. 2002. “Modelica – A General Object-Oriented Language for Continuous and Discrete-Event System Modeling and Simulation.” Proceedings of the 35th annual simulation symposium, San Diego, California, vol. 35, 365–380.
  • General Services Administration. 2014. “3D–4D Building Information Modeling.” Accessed May 12. http://www.gsa.gov/portal/content/105075?utm_source=PBS&utm_medium=print-radio&utm_term=bim&utm_campaign=shortcuts
  • Good, J., A. Frisque, and D. Phillips. 2008. “The Role of Wind in Natural Ventilation Simulations using Airflow Network Models.” Proceedings of the third national conference of IBPSA-USA, Berkeley, CA, 140–147.
  • GRAPHISOFT. 2014. “About ArchiCAD – A 3D CAD Software for Architectural Design & Modeling.” Accessed May 12. http://www.graphisoft.com/products/archicad
  • Gratia, E., and de A. Herde. 2002. “A Simple Design Tool for the Thermal Study of an Office Building.” Energy and Buildings 34 (3): 279–289. doi: 10.1016/S0378-7788(01)00096-2
  • Haberl, J. S. 2008. “SIMBUILD Survey: Academic Use of Simulation Software.” Invited presentation at the third national conference of IBPSA-USA, Berkeley, CA, July 30–August 1.
  • IESVE. 2014. “<VIRTUAL Environment> – Integrated Environmental Solutions.” Accessed May 12. http://www.iesve.com/software/ve-pro/tutorial-files/ies_ve_tutorial.pdf
  • Judkoff, R., and J. Neymark. 1995. “International Energy Agency Building Energy Simulation Test (bestest) and Diagnostic Method.” NREL/TP-472-6231. National Renewable Energy Lab., Golden, CO.
  • Kalagasidis, A. S. 2003. “HAM-Tools, International Building Physics Toolbox, Block Documentation.” Report R-02:6, Department of Building Technology, Chalmers University of Technology, Gothenburg, Sweden.
  • Kalagasidis, A. S., P. Weitzmann, T. R. Nielsen, R. Peuhkuri, C. Hagentoft, and C. Rode. 2007. “The International Building Physics Toolbox in Simulink.” Energy and Buildings 39 (6): 665–674. doi: 10.1016/j.enbuild.2006.10.007
  • Lam, K. P., A. Mahdavi, S. Gupta, N. H. Wong, R. Brahme, and Z. Kang. 2002. “Integrated and Distributed Computational Support for Building Performance Evaluation.” Advances in Engineering Software 33 (4): 199–206. doi: 10.1016/S0965-9978(02)00009-1
  • Lam, K. P., Wong, N. H., Shen, L. J., Mahdavi, A., Leong, E., Solihin, W., and Kang, Z. 2006. “Mapping of Industry Building Product Model for Detailed Thermal Simulation and Analysis.” Advances in Engineering Software 37 (3): 133–145. doi: 10.1016/j.advengsoft.2005.05.005
  • Lee, G., R. Sacks, and C. M. Eastman. 2006. “Specifying Parametric Building Object Behavior (BOB) for a Building Information Modeling System.” Automation in Construction 15 (6): 758–76. doi: 10.1016/j.autcon.2005.09.009
  • Mahdavi, A. 1999. “A Comprehensive Computational Environment for Performance Based Reasoning in Building Design and Evaluation.” Automation in Construction 8 (4): 427–435. doi: 10.1016/S0926-5805(98)00089-2
  • Maile, T., M. Fischer, and V. Bazjanac. 2007. “Building Energy Performance Simulation Tools-a Life-Cycle and Interoperable Perspective.” Center for Integrated Facility Engineering (CIFE) Working Paper 107.
  • Microsoft Corporation. 2014. “NDde – Home.” Accessed May 12. http://ndde.codeplex.com
  • Nielsen, T. R., R. H. Peuhkuri, P. Weitzman, and C. Gudum. 2002. Modelling Building Physics in Simulink. Report SR-02-03, Department of Civil Engineering, Technical University of Denmark.
  • NIST (National Institute of Standards and Technology). 1993. FIPS Publication 183: Integration Definition of Function Modeling (IDEF0). Gaithersburg, MD: National Institute of Standards and Technology.
  • Nouidui, T. S., M. Wetter, and W. Zuo. 2012. “Validation and Application of the Room Model of the Modelica Buildings Library.” Proceedings of the ninth international Modelica conference, Munich, Germany, September. Modelica Association.
  • Pedersen, C. O., R. J. Liesen, R. K. Strand, and D. E. Fisher. 2001. A Toolkit for Building Load Calculations. Atlanta, GA: American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.
  • Punjabi, S., and V. Miranda. 2005. “Development of an Integrated Building Design Information Interface.” Proceedings of IBPSA‘05 buildings simulation conference, Montreal, 969–976.
  • US DOE (US Department of Energy). 2014. “Building Technologies Office: Building Energy Software Tools Directory.” Accessed May 12. http://apps1.eere.energy.gov/buildings/tools_directory
  • Wetter, M. 2009. “Modelica-Based Modeling and Simulation to Support Research and Development in Building Energy and Control Systems.” Journal of Building Performance Simulation 2 (2): 143–61. doi: 10.1080/19401490902818259
  • Winkelmann, F. C., B. E. Birsdall, W. F. Buhl, K. L. Ellington, A. E. Erdem, J. J. Hirsch, and S. Gates. 1993. DOE-2 supplement, version 2.1E. Technical Report, Report No. LBL-34947, Lawrence Berkeley National Laboratory, Berkeley, CA.
  • Yan, W., M. J. Clayton, J. S. Haberl, W. Jeong, J. Kim, S. Kota, J. Bermudez Alcocer, and M. Dixit. 2013. “Interfacing BIM with Building Thermal and Daylighting Modeling.” Proceedings of the 13th IBPSA conference, Chambery, France, August.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.