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Towards an Active, Responsive, and Solar Building Envelope
Author(s) -
Francesco Goia,
Marco Perino,
Valentina Serra,
Fabio Zanghirella
Publication year - 2010
Publication title -
journal of green building
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.248
H-Index - 21
eISSN - 1943-4618
pISSN - 1552-6100
DOI - 10.3992/jgb.5.4.121
Subject(s) - building envelope , glazing , architectural engineering , renewable energy , natural ventilation , energy performance , building science , efficient energy use , engineering , envelope (radar) , systems engineering , solar gain , key (lock) , computer science , solar energy , thermal , mechanical engineering , aerospace engineering , civil engineering , ventilation (architecture) , electrical engineering , radar , physics , meteorology , computer security
The key role of the building envelope in achieving building energy efficiency and indoor comfort for the user has been long established. The most promising—and innovative—strategy for the building envelope of the future is based on a dynamic, active and integrated solution, that is able to optimize the thermal performance, integrate the active elements and systems, and exploit energy from renewable sources. This paper illustrates the most relevant results of a decade-long research activity carried out on active and integrated building envelopes at the Politecnico di Torino, in which numerical analyses and experimental campaigns, involving test cells and field monitoring, have been performed. The overall performances of different façade modules and the thermo-physical behaviour of various components, under different operating strategies, are presented and discussed. The analysis provides information on the contribution of each subsystem, e.g. glazing, sun-shading devices, natural and mechanical ventilation, . . . to the achieved energy efficiency and the overall performances of different typologies of Double-Skin Façades (DSFs) and Advanced Integrated Façades (AIFs

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