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id ijac201513101
authors Krietemeyer, Bess; Brandon Andow, Anna Dyson
year 2015
title A Computational Design Framework Supporting Human Interaction with Environmentally-Responsive Building Envelopes
source International Journal of Architectural Computing vol. 13 - no. 1, 1–24
summary Emerging materials present opportunities to fundamentally shift current expectations of dynamic building envelope functionality towards systems that can respond to occupant needs while meeting the energy demands of buildings. In order to assess the environmental, social, and architectural opportunities that are increasing with responsive building envelopes, new tools are needed to simulate their multi-performance capabilities. This paper describes a computational design framework to support human interaction with environmentally-responsive electroactive dynamic daylighting systems. The objective is to develop algorithms for variable solar control and visible transmittance that simultaneously address occupant preferences for visual effects and interaction. Results demonstrate that energy performance and user satisfaction are not mutually exclusive and can be co-optimized. The effectiveness and limitations of the computational framework in assessing strategies to balance environmental performance and human interaction are discussed. Conclusions present areas of ongoing work that integrate multi-user interactions and immersive visualization techniques with multiscalar energy modeling tools.
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100%; open Andow, B., Krietemeyer, B., Stark, P. and Dyson, A. (2013) Find in CUMINCAD Performance Criteria for Dynamic Window Systems Utilizing Nanostructured Behaviors for Energy Harvesting and Environmental Comfort , Proceedings of the International Society for O ptics and Photonics (SPIE) Conference on Sensors and Smart Structures Technologies for C ivil, Mechanical, and A erospace Systems, 2013, 8692
100%; open Baetens, R., Jelle, B.P. and Arild, G. (2010) Find in CUMINCAD Properties, Requirements and Possibilities of Smart Windows for Dynamic Daylight and Solar Energy Control in Buildings: A State-of-the Art Review , Solar Energy Materials & Solar C ells, 2010, 94, 87-105
100%; open Bakker, L.G., Hoes-van Oeffelen, E.C.M., Loonen, R.C.G.M. and Hensen, J.L.M. (2014) Find in CUMINCAD User satisfaction and interaction with automated dynamic facades: A pilot study , Energy and Buildings, 2014, 78, 44-52
100%; open Boerstra, A.C., Beuker, T., Loomans, M.G.L.C. and Hensen, J.L.M. (2013) Find in CUMINCAD Impact of available and perceived control on comfort and health in European offices , Architectural Science Review, 2013, 56, 30-41
100%; open Clear, R., Inkarojrit, V. and Lee, E. (2006) Find in CUMINCAD Subject Responses to Electrochromic Windows , Energy and Buildings, 2006, 38, 758-779
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100%; open Galasiu, A.D. and Veitch, J.A. (2006) Find in CUMINCAD Occupant Preferences and Satisfaction with the Luminous Environment and Control Systems in Daylit Offices: A Literature Review , Energy and Buildings, 2006, 38, 728-42
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100%; open Krietemeyer, E., Smith, S. and Dyson, A. (2011) Find in CUMINCAD Dynamic Window Daylighting Systems: Electropolymeric Technology for Solar Responsive Building Envelopes , Proceedings of EA PAD XIII Conference, International Society for O ptics and Photonics (SPIE), San Diego, California, 2011, 79763A, doi:10.1117/12.885720
100%; open Lagios, K., Niemasz, J. and Reinhart, C. (2010) Find in CUMINCAD Animated Building Performance Simulation (ABPS) – Linking Rhinoceros/Grasshopper with Radiance/Daysim , Proc IBPSA -USA SimBuild, 2010
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100%; open Loonen, R.C.G.M., Tricka, M., Cóstola, D. and Hensen, J.L.M. (2013) Find in CUMINCAD Climate adaptive building shells: state-of-the-art and future challenges , Renewable and Sustainable Energy Reviews, 2013, 25, 483-93
100%; open Masoso, O.T. and Grobler, L.J (2010) Find in CUMINCAD The Dark Side of Occupants’ Behaviour on Building Energy Use , Energy and Buildings, 2010, 42, 173-177
100%; open McCluney, R. (2002) Find in CUMINCAD Suggested methodologies for determining the SHGC of complex fenestration systems for NFRC Ratings , Internal Report, Florida C enter for Solar Research, University of Central Florida, Florida, 2002
100%; open McNeil, A. and Lee, E.S. (2012) Find in CUMINCAD A validation of the Radiance three-phase simulation method for modelling annual daylight performance of optically complex fenestration systems , Journal of Building Performance Simulation, 2012, 6(1), 24-37
100%; open Schlam, E. and Slater, M. (2012) Find in CUMINCAD Method of Fabricating an Insulated Glazing Unit Having Controllable Radiation Transmittance , US 8,134,112,B2, United States, 2012

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