Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/71710

TítuloThermal performance of steel and fibre reinforced concrete composite floor
Autor(es)Silva, Talita Lima
Valente, Isabel B.
Barros, Joaquim A. O.
Roupar, Maria José
Silva, Sandra Monteiro
Mateus, Ricardo
Palavras-chaveSteel and concrete composite floor
Fibre reinforced concrete
Thermal performance
Numerical analysis
Data2021
EditoraRILEM Publications
RevistaRILEM Bookseries
CitaçãoSilva, T.L.; Valente, I.B.; Barros. J.; Roupar, M.J.; Silva, S.M.S.; Mateus, R. (2020) Thermal performance of steel and fibre reinforced concrete composite floor”. RILEM Spring Convention 2020 – Ambitioning a sustainable future for built environment: comprehensive strategies for unprecedented challenges”, Guimarães, 9-14 March 2020, 10 pp.
Resumo(s)In general, steel and concrete composite floors tend to present a reduced functional performance (considering thermal and acoustic conditions), due to their low mass and to the high conductivity of the steel elements. By in-cluding components with high thermal insulation capacity in these structur-al systems, it is possible to maintain the structure lightness and not com-promise the thermal performance. Within this work, the analysis is dedicated to a composite floor in which a fibre reinforced concrete (FRC) slab is asso-ciated with a concrete filled “U” type steel profile. The fibre reinforcement avoids the use of conventional reinforcement, with significant savings in term of fabrication time. Filler blocks are inserted, composed by thermal in-sulation material (EPS), between the “U” shaped steel profiles, which act as formwork during the casting phase and, after the concrete hardening, con-tributing to improve the system´s thermal performance. This system was evaluated through numerical assessment. The analysis enabled to determine the thermal transmittance (U value) and to identify the critical zones in terms of thermal insulation efficiency. The performance of the proposed so-lution was also compared to other flooring solutions. According to the re-sults obtained, the proposed composite floor presents a better thermal behav-iour than other more traditional flooring systems.
TipoCapítulo de livro
URIhttps://hdl.handle.net/1822/71710
DOI10.1007/978-3-030-76551-4_18
ISSN2211-0844
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:ISISE - Comunicações a Conferências Internacionais

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