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Time – Space – Matter Emergent Materials in Architecture

Published online by Cambridge University Press:  22 June 2015

Martina Decker*
Affiliation:
New Jersey Institute of Technology, University Heights Newark NJ 07102, USA
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Abstract

This paper investigates the development process of emergent materials for architecture by looking at the example of Phase Change Materials. In the context of the complex nature of the constructed environment and the functional and performance requirements for buildings, emergent materials have to be carefully tuned for maximum performance. Investigating the relationship of time, space and matter in the design and development process through interdisciplinary endeavors is at the heart of this investigation. Furthermore, a shift from multidisciplinary endeavors to truly interdisciplinary collaboration that crosses the traditional boundaries of the individual fields is suggested.

Type
Articles
Copyright
Copyright © Materials Research Society 2015 

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References

REFERENCES

Nagengast, Bernard. “Early twentieth century air-conditioning engineering.” ASHRAE Journal 41, no. 3 (March 1999): 55.Google Scholar
Letter from Alfred Wolff to George B. Post, Oct. 1, 1901. New York Stock Exchange Archives Google Scholar
Annual Energy Outlook 2014, Annual Energy Review, Apr2014, piv-vii, 4p. Publisher: U.S. Department of Energy.Google Scholar
Hawlader, M.N.A., Uddin, M.S., and Khin, Mya Mya. “Microencapsulated PCM thermal-energy storage system.” Applied Energy 74, no. Energex 2002 - New and Renewable Sources of Energy - Topic I (January 1, 2003): 195202. ScienceDirect CrossRefGoogle Scholar
Schossig, P., et al. . “Micro-encapsulated phase-change materials integrated into construction materials.” Solar Energy Materials And Solar Cells 89, no. EuroSun2004 (January 1, 2005): 297306.ScienceDirect CrossRefGoogle Scholar
Archibold, , Ramos, Antonio, et al. . “The melting process of storage materials with relatively high phase change temperatures in partially filled spherical shells.” Applied Energy 116, (March 1, 2014): 243252. ScienceDirect CrossRefGoogle Scholar
Kalnæs, , Edsjø, Simen, and Jelle, Bjørn Petter. 2015. “Review: Phase change materials and products for building applications: A state-of-the-art review and future research opportunities.” Energy & Buildings ScienceDirect CrossRefGoogle Scholar
Jin, Xing, and Zhang, Xiaosong. “Thermal analysis of a double layer phase change material floor.” Applied Thermal Engineering 31, (January 1, 2011): 15761581. ScienceDirect CrossRefGoogle Scholar
Harland, Alice, MacKay, Christina, and Vale, Brenda. “Phase change materials in architecture.” Victoria University of Wellington (2010): 11.Google Scholar
After Gerd Ceder (MIT); materials information from T. W. Eagar and M. King, Technology Review 98(2), 42 (1995).Google Scholar
Vitruvius, Pollio, and Morgan, Morris Hicky. Vitruvius: the ten books on architecture. Translated by Morris Hicky Morgan. With illus. and original designs prepared under the direction of Herbert Langford Warren. n.p.: New York, Dover Publications [1960] pp. 6, 1960.Google Scholar
“About the Materials Genome Initiative.” The White House. Accessed March 26, 2015. https://www.whitehouse.gov/mgi.Google Scholar