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Application potential of textile reinforcement in concrete construction for infrastructure buildings: environmental performance and availability

 Application potential of textile reinforcement in concrete construction for infrastructure buildings: environmental performance and availability
Auteur(s): ORCID, ORCID, ,
Présenté pendant IABSE Congress: Structural Engineering for Future Societal Needs, Ghent, Belgium, 22-24 September 2021, publié dans , pp. 836-844
DOI: 10.2749/ghent.2021.0836
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With the building industry being one of the main sources of carbon dioxide emission worldwide and concrete being the main construction material, new strategies have to be developed to reduce the ca...
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Détails bibliographiques

Auteur(s): ORCID (University of Natural Resources and Life Sciences, Vienna, Austria)
ORCID (University of Natural Resources and Life Sciences, Vienna, Austria)
(TU Wien, Vienna, Austria‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌)
(TU Wien, Vienna, Austria‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌‌)
Médium: papier de conférence
Langue(s): anglais
Conférence: IABSE Congress: Structural Engineering for Future Societal Needs, Ghent, Belgium, 22-24 September 2021
Publié dans:
Page(s): 836-844 Nombre total de pages (du PDF): 9
Page(s): 836-844
Nombre total de pages (du PDF): 9
DOI: 10.2749/ghent.2021.0836
Abstrait:

With the building industry being one of the main sources of carbon dioxide emission worldwide and concrete being the main construction material, new strategies have to be developed to reduce the carbon footprint thereof. The use of high-performance materials in structural concrete, as for example textile-reinforced concrete (TRC), seems to allow for a reduction of the resource consumption and the carbon emissions. The present paper addresses potential applications of TRC examining the global warming potential (GWP) of a rail platform barrier. The resource consumption is depicted in a parametrical study in terms of the necessary component height and reinforcement area considering both the serviceability limit state (SLS) as well as the ultimate limit state (ULS). The results clearly indicate an achievable reduction of the GWP during construction when using textile reinforcement made of high-performance fibres. Furthermore, an analysis of the European market was conducted to prove the availability of this new reinforcement type.

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