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Modelling of active solar building envelopes for cost-effective evaluation

: Maurer, C.; Kuhn, T.

Postprint urn:nbn:de:0011-n-4588878 (384 KByte PDF)
MD5 Fingerprint: e9a80701bdcae3e5868eb2bf358cac15
Created on: 4.8.2017

Journal of facade design and engineering : JFDE 5 (2017), No.2, pp.75-82
ISSN: 2213-3038
ISSN: 2213-302X
Journal Article, Electronic Publication
Fraunhofer ISE ()
Thermische Anlagen und Gebäudetechnik; building-integrated photovoltaics (bipv); building-integrated solar systems (BISS); building integrated solar thermal systems (bist); solar architecture; solar building envelopes; Photovoltaik; Gebäudeenergietechnik; Photovoltaische Module und Kraftwerke; Thermische Kollektoren und Komponenten; Gebäudehülle

Active building envelopes have provided cost reductions of 40% compared to the separate installation of solar collectors on a building envelope. However, solar building envelopes are more complex than conventional building envelopes due to their additional solar function. Firstly, the paper explains this complexity before describing methods of handling it. The focus of the simulation models is to obtain high levels of accuracy at low costs. From the development of innovative solar envelopes to the general planning and construction of solar architecture, this paper provides seven recommendations to optimize the cost-benefit ratio of simulations of active building envelopes.