Decision support; early stage; design; simulation; architects
Résumé :
[en] Building performance simulation (BPS) is the basis for informed decision-making of Net Zero Energy Buildings (NZEBs) design. This paper aims to investigate the use of building performance simulation tools as a method of informing the design decision of NZEBs. The aim of this study is to evaluate the effect of a simulation-based decision aid, ZEBO, on informed decision-making using sensitivity analysis. The objective is to assess the effect of ZEBO and other building performance simulation (BPS) tools on three specific outcomes: (i) knowledge and satisfaction when using simulation for NZEB design; (ii) users’ decision-making attitudes and patterns, and (iii) performance robustness based on an energy analysis. The paper utilizes three design case studies comprising a framework to test the use of BPS tools. The paper provides results that shed light on the effectiveness of sensitivity analysis as an approach for informing the design decisions of NZEBs.
Disciplines :
Architecture
Auteur, co-auteur :
Attia, Shady ; Université Catholique de Louvain – UCL > Ecole Polytechnique de Louvain > Architecture et climat
Langue du document :
Anglais
Titre :
Achieving Informed Decision-Making using Building Performance Simulation
Date de publication/diffusion :
septembre 2013
Nom de la manifestation :
Education and research in Computer Aided Architectural Design in Europe
Organisateur de la manifestation :
TU-Delft
Lieu de la manifestation :
Delft, Pays-Bas
Date de la manifestation :
18-9-2013 to 20-9-2013
Manifestation à portée :
International
Titre de l'ouvrage principal :
Proceeding of the Education and research in Computer Aided Architectural Design in Europe Conference
Achten, K., Coninck, R.D., Verbeeck, G.and Van der Veken, J., 2009. Analyzing the economic feasibility of permutations of energy-saving measures with batch simulations and Pareto optimization. In: Eleventh International IBPSA Conference. Glasgow, Scotland.
ASHRAE 2008. AHSRAE Vision 2020, ASHRAE Vision 2020 Ad Hoc Committee, http://www.ashrae.org/doclib/20080226_ashraevision2020.pdf, accessed 10/01/2011.
Athienitis, A. et al. 2010. Strategic Design, Optimization, and Modelling Issues of Net-Zero Energy Solar Buildings, EuroSun 2010, Graz.
Attia S, 2012a, Optimisation for Zero Energy Building Design: Interviews with Twenty Eight International Experts, Architecture et Climat,: Université catholique de Louvain.
Attia, S., 2012b, A Tool for Design Decision Making-Zero Energy Residential Buildings in Hot Humid Climates, PhD Thesis, UCL, Diffusion universitaire, CIACO, Louvain La Neuve.
Attia, S et al., 2011a. Selection criteria for building performance simulation tools: contrasting architects’ and engineers’ needs’, Journal of Building Performance Simulation.
Attia, S.and De Herde A. 2011b. Early design simulation tools for net zero energy buildings: a comparison of ten tools, International Building Performance Simulation Association, Sydney, Australia.
Attia, S., Gratia, E.and De Herde, A, 2013. Achieving informed decision-making for net zero energy buildings design using building performance simulation tools, International Journal of Building Simulation, Tsinghua-Springer Press, Vol 6-1, pp. 3-21
Attia, S. and Wanas, O. (2012) The Database of Egyptian Building Envelopes (DEBE): A database for building energy simulations, SimBuild 2012, August 2012, Madison, Wisconsin.
Bambardekar, S. and Poerschke, U., 2009. The architect as performer of energy simulation in the early design stage. In Proceeding of IBPSA, Glasgow, pp. 1306-1313
Bogenstätter, U. 2000. Prediction and optimization of lifecycle costs in early design, Building Research & Information, vol.28, no.5, pp.376-386.
Charron, R., Athienitis, A. and Beausoleil-Morrison, I., 2006. A Tools for the design of zero energy solar homes, ASHRAE. Annual meeting, Chicago, vol. 112 (2), pp. 285-295.
EU, 2009. Report on the proposal for a directive of the European Parliament and of the Council on the energy performance of buildings (recast), European Parliament.
Georges,L, Massart, C., Van Moeseke, G.,De Herde, A., 2012, Environmental and economic performance of heating systems for energy-efficient dwellings: Case of passive and low-energy single-family houses. Energy Policy 40, 452–464.
Hayter, S., Torcellini, P. et al. 2001. The Energy Design Process for Designing and Constructing High-Performance Buildings, Clima 2000/Napoli 2001 World Congress.
IEA. SHC Task 40/ECBCSAnnex 52, 2009 Towards Net Zero Energy Solar Buildings, IEA SHC Task 40, http://www.iea-shc.org/task40/index.html, 2008 (accessed 10/10/2013).
Kurnitski, J., Saari, A., Kalamees, T., Vuolle, M., Niemelä, J., Tark, T., 2011, Cost optimal and nearly zero (nZEB) energy performance calculations for residential buildings with REHVA definition for nZEB national implementation, Energy & Buildings, Vol.43 (11), pp. 3279-3288
Marszal, A., Heiselberga P., Bourrelle J., Musall, E., Voss, K., Sartori, I.and Napolitanoe, A., 2011a, Zero Energy Building – A review of definitions and calculation methodologies, Energy and Buildings, Volume 43 (4), pp. 971-979.
Marszal, A.and Heiselberg, P., 2011b, Life cycle cost analysis of a multi-storey residential Net Zero Energy Building in Denmark, Energy 36, pp. 5600-5609.
Milne M (2011). Climat Consultant 5. Available at http://www.energydesign-tools.aud.ucla.edu.
Pless, S, Torcellini, P., Macey, P, 2012, Controlling Capital Costs in High Performance Office Buildings: 15 Best Practices for Overcoming Cost Barriers in Project Ac-quisition, Design, and Construction, NREL Commercial Buildings Research Group.
Renard, F, Nourricier, S, Pietrantonio, MD and Feldheim, V 2008. Technical– Economic Analysis of the Cost-Effec-tiveness of Energy Saving Investments for Residential Buildings. Technical Report, Service Public de Wallonie, DG04, Final Report.
Riether, G and Butler, T 2008. Simulation space. A new design environment for architects. In 26th eCAADe Conference Proceedings. Muylle M., ed., Antwerp, Belgium.
RMI 2011, Rocky Mountain Institute, online at: http://bem-book.ibpsa.us/index.php?title=Main_Page [accessed 1 April 2013].
Sartori, I, Napolitano, A and Voss K 2012, Net zero energy buildings: A consistent definition framework, Energy Buildings, Volume 48, May 2012, Pages 220-232.
Shaviv, E 1999. Integrating energy consciousness in the design process. Automation in Construction 8(4): pp. 463-472.
Weytjens, L, Attia S, Verbeeck, G and De Herde, A 2010. A comparative study of the ‘architect-friendliness’ of six building performance simulation tools, Sustainable Buildings CIB 2010, Maastricht, Netherlands
Zeiler, W 2011, Case studies on NZEB: Dutch experience with schools, REHVA Conference Towards net zero energy buildings and building labelling, Estonia: REHVA, pp. 1-12.