Historical Evolution of Responsive Facades
Factors Affecting the Design and Development
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Abstract
Responsive facade system is considered a major component of high-performance building envelope that is capable of responding to environmental stimuli and aims to improve occupants’ comforts and lower energy consumption. While building design-related articles have frequently addressed the technical and design aspects of responsive facades, very limited historical studies have been conducted to shed light on the evolution of such systems. The paper is the result of a comprehensive study placing emphasis on exploring historical factors that initiated and affected the development of responsive facades. The objective is to examine and classify the factors explored in a chronological manner and present a graphical timeline to address the evolution of design and development. A comprehensive literature review has been conducted on evolution of design and development of responsive facades in historical contexts to explore the influential factors. It turns out that the influential factors can be classified into a set of sociocultural, technological, political/economic, and environmental factors originating from revolutionary changes in art, technology and building construction since late 19th century. The factors are presented in chronological manner. A graphical timeline that explains the evolution of design and development is also presented. The historical timeline developed is intended to serve as a helpful resource for researchers and educators in their research and teaching activities. The timeline formulated can be utilized to track the pattern of current developments and predict what might be expected in the future. While the focus of the paper is on individual architecture scale, the trend of the recent developments presented in the timeline suggests that responsive facades will be possibly implemented for urban-scaled development of smart neighborhoods or cities in the future.
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Introduction
A façade system is one of the most significant contributors to the energy consumption and the occupants’ comfort of buildings (Aksamija 2016), due to the fact that 20 to 6
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Conclusion
Historical evidence shows how the design and development of responsive facades have been affected from sociocultural, technological, political/economic, and environmental factors. In response, to the lack of comparative chronological analysis
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Abas & Salman.1992a. “Geometric and Group-Theoretic Methods for Computer Graphic studies of Islamic Symmetric Patterns”. Computer Graphic Form, 11(1), 43-53.
Ahmed, Mostafa, Abdel-Rahman, Ali, Bady, Mohmoud, Mahrous, Essam & Suzuki, Mahrous. 2016. “Optimum energy consumption by using kinetic shading system for residential buildings in hot arid areas”. International Journal of Smart Grid and Clean Energy, 5.
Baraona, Ethel, Karanastasi, Elina, & Skoutelis, Nikos. 2013. “Takis Zenetos: Unbuilt Tropes”. http://www.mascontext.com/issues/18-improbable-summer-13/takis-zenetos-unbuilt-tropes/
Broug, Eric. 2013a. “Islamic geometric design. New York: Thames & Hudson Ltd.
Caplescu, Onna Andreea. 2015. “Architecture in Science Fiction Movies”. Romania.
Chen, Guang-Dah, & Lin, Chih-Wei, & Fan, His-Wen. 2015a.” The History and Evolution of Kinetic Art.” International Journal of Social Science and Humanity.15, 922-930.
Corbusier, Le.1923a. “Toward a New Architecture”. London: John Rodker Publisher.
Decker, Martina & Zarzycki, Andrzej .2013. “Designing Resilient Building with Emergent Materials”. eCAADe, 32,179–184.
Griswold, Eliza. 2012. “How ‘Silent Spring’ Ignited the Environmental Movement.” http://www.nytimes.com/2012/09/23/magazine/how-silent-spring-ignited-the-environmental-movement.html
Grobman, Jacob Yasha & Yekutiel, Tatyana Pankratov .2013. “Autonomous Movement of Kinetic Cladding Components in Building Facades”. Presented at the Int. Conf. on Research into Design (ICoRD’13), Indian Institute of Technology Madras, Chennai.https://www.researchgate.net/publication/287644074_Autonomous_Movement_of_Kinetic_Cladding_Components_in_Building_Facades.
Hoberman Transformable Design. 2017. “Adaptable Building Initiative”. http://www.hoberman.com/abi.html
Jenkins, Jim & Quick, Dave. 1989a. “Motion Motion Kinetic Art”. Gibbs Smith Publisher.
Khoo, Chin Koi. 2013. “Morphing Architecture: with responsive material system”. https://researchbank.rmit.edu.au/view/rmit:160591
Khoo, Chin Koi & Salim, Flora Dilys. 2013. “Lumina: A Soft Kinetic Material for Morphing Architectural Skins and Organic User Interfaces”. International conference on pervasive and ubiquitous computing, Zurich, Switzerland.
Khmelnitsky, Dmitry. 2013a. “Yakov Chernikhov: Architectural Fantasies in Russian Constructivism”. DOM Publishers.
Kolarevic, Branko, & Parlac, Vera. 2015. ”Building Dynamics: Exploring Architecture of Change”. New York, US.: Routledge Press.
Konis, Kyle & Selkowit, Stephen. 2017. “Effective Daylighting with High-Performance Facades, Emerging Design Practices”. Springer International Publishing, Switzerland.
Loos, Adolf.1908a. “Ornament and Crime”.
Mossavi, Farshid, & Kubo, Michael. 2006a. “The Function of Ornaments”. Harvard University Graduate School of Design.
Matin, Negar, Eydgahi, Ali & Shyu, Shimming. “Comparative Analysis of Technologies Used in Responsive Building Facades”. 124th Conf. American society of engineering education, Colombus, Ohio, 2017.
Mondia 2014. “Adaptive building envelopes.” http://publications.lib.chalmers.se/records/fulltext/214574/214574.pdf
Pask, Gorden. 1969. “The Architectural Relevance of Cybernetics.” http://workgroups.clemson.edu/AAH0503_ANIMATED_ARCH/879Readings/GordonPask_Architectural%20Relevance%20of%20Cybernetics.pdf
Perrone, R. & Buchler. 2005. “An investigation futurist architectural design”
Sadler, Simon. 2005. “Archigram: Architecture without Architecture”. MIT Press.
Sendi, Mona. 2014a. “The Effect of Technology to Integrate Aesthetic Desire of Contemporary Architecture with Environmental Principles in Facade Design”. International Scientific, Journal Architecture and Engineering, 2(1).
Sharaidin, Kamil. 2014. “Kinetic Facades: towards design for environmental performance”. School of Architecture, RMIT University, Australia.
Stoughton, John .2017. “A smartphone-controlled responsive shading system prototype”. https://archpaper.com/2017/06/seattle-based-nbbjs-sunshade-prototype/#gallery-0-slide-2
United States Environmental Protection Agency.2016. Green Building. https://archive.epa.gov/greenbuilding/web/html/about.html?__hstc=23243621.f6d8d83307931013c2035c870506d914.1469468270039.1469468270039.1469468270039.1&__hssc=23243621.1.1469468270039&__hsfp=3935260784
Velikov, K. & Thun, G. 2013. “Responsive Building Envelopes: Characteristics and evolving paradigms in Design and Construction of High Performance Homes”. London, UK: Routledge Press.
Wilkinson, Ch., & Wood, A. 2013. “Al Bahar Towers: External Automated Shading System,” Jury statement of CTBUH Innovation Award.
Yiannoudes, Socrates.2016. “Architecture and Adaptation: From Cybernetics to Tangible Computing”. New York: Routledge.
Yekutiel, Tatyana Pankratov & Grobman, Jacob Yasha. 2014. Controlling kinetic cladding components in building facades: A case for autonomous movement. Presented at the 19th Int. Conf. of the Association of Computer-Aided Architectural Design Research in Asia CAADRIA, Hong Kong. http://grobman.net.technion.ac.il/files/2014/05/CAADRIA-2014-autonemous-movement.pdf.