IFC-Based Framework for Evaluating Total Performance of Building Envelopes

Author:

Fazio P.1123,He H. S.1123,Hammad A.1123,Horvat M.1123

Affiliation:

1. Building Envelope Performance Laboratory, Centre for Building Studies; and, Dept. of Building, Civil, and Environmental Engineering, Concordia Univ., Montreal PQ, Canada.

2. Concordia Institute for Information Systems Engineering, Concordia Univ., Montreal PQ, Canada.

3. Dept. of Architectural Science, Ryerson Univ., Toronto, Ontario, Canada; previously, Building Envelope Performance Laboratory, Centre for Building Studies, Dept. of Building, Civil, and Environmental Engineering, Concordia Univ., Montreal PQ, Canada.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Visual Arts and Performing Arts,Building and Construction,Civil and Structural Engineering,Architecture

Reference43 articles.

1. Autodesk. (2005). “Autodesk Architectural Desktop.” ⟨ http://usa.autodesk.com/adsk/servlet/index?siteID=123112&id=2956700 ⟩ (July 18 2005).

2. Anneling R. (1998). “The P-mark system for prefabricated houses in Sweden.” CADDET energy efficiency newsletter Newsletter No. 1 20–22. ⟨ http://caddet-ee.org/public/uploads/pdfs/newsletter/981_07.pdf ⟩ (March 9 2004).

3. Building energy performance simulation as part of interoperable software environments

4. Bazjanac V. and Maile T. (2004). “IFC HVAC interface to EnergyPlus—A case of expanded interoperability for energy.” SimBuild 2004 IBPSA-USA National Conf. Boulder Colo.

5. BFRL/NIST. (2005). “MOIST 3.0.” ⟨ http://www.bfrl.nist.gov/863/moist.html ⟩ (July 18 2005).

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