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- W2147795848 abstract "In response to climate change, energy poverty, and increasing prices of fossil fuel energy;building integrated renewable energy should find a quick and strong stream in design andconstruction fields. Solar thermal appears as a promising technology for domestic and nondomesticbuilding envelopes, particularly for space heating which counts for 61% the totaldomestic energy consumption in countries with long cold seasons like UK. The integration oftranspired solar collectors (TSC) technology however suffers lack of adoption in buildingenvelopes despite its apparent technical competitiveness for using solar pre-heated external airfor space heating since patented in the late-1980s. Architectural integration seems to play amajor role in developing and encouraging the use of TSC in buildings. This paper thereforeinvestigates the innovative possibilities of improving the architectural integration of TSC intobuilding envelopes at both multi-functional and aesthetic levels.An international web-based survey was distributed to architects, engineers, and otheracademic and professionals in design and construction fields with intensive focus on countrieswith long heating seasons and potential integrations of TSC such as Canada, USA, and UKand mainland Europe. The responses of 1,295 participants, the largest pool ever for previouscomparative studies in this field, were analysed quantitatively and qualitatively. Unlikeprevious studies the outcomes were statistically examined using Pearson’s Chi-square andSpearman’s correlation Coefficient tests. Although respondents only had a moderateawareness of the TSC technology they were very interested in integrating solar energy intothe built environment. Seven selective integration images of TSC and photovoltaic (PV), fromexisting projects in Canada, USA and Europe were rated by respondents in terms of multifunctionaland aesthetic roles of integration. The barriers and limitations along with preferableintegration schemes were investigated and discussed. Integration parameters such as function,type, and position of TSC which were found to be the most favoured by the participants wereidentified. The survey results provide valuable contributing information of architecturallyintegrating transpired solar thermal in the built environment. This contribution is necessaryfor researchers and professionals in design and construction fields." @default.
- W2147795848 created "2016-06-24" @default.
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- W2147795848 date "2013-09-06" @default.
- W2147795848 modified "2023-09-27" @default.
- W2147795848 title "Architectural integration of transpired solar thermal for space heating in domestic and nondomestic building envelopes" @default.
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