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2021 | OriginalPaper | Buchkapitel

Performance of Thermal Break Strips in Lightweight Steel Framed Walls

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Abstract

An accurate thermal characterization of the envelope components is essential to achieve a reliable evaluation of thermal behaviour and energy efficiency of buildings. In lightweight steel-framed (LSF) building components, the major thermal performance concern is related to the unwanted significant thermal bridge effects originated by the high thermal conductivity of steel. The application of thermal break (TB) strips in the steel stud flanges is one of the most currently used thermal bridge mitigation strategies. In this paper the thermal performance of ten interior LSF walls configurations are measured, using the heat flow meter (HFM) method under laboratory-controlled conditions. Three TB strips materials and three TB locations (inner, outer and both sides of steel stud) are assessed and a comparison with the thermal performance of a reference wall without TB strips is made. Regarding the TB strips materials, it was found that the best thermal performance is achieved by aerogel, which is the material that presents the lowest thermal conductivity. Considering the TB strips location, the application on both sides of steel stud shows a relative significant thermal performance increase comparatively to the application on inner or outer side, presenting these last two configurations very similar performances.

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Literatur
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Zurück zum Zitat Tyre4BuildIns, Research project Tyre4BuildIns - ‘Recycled tyre rubber resin-bonded for building insulation systems towards energy efficiency’, University of Coimbra, PT. www.tyre4buildins.dec.uc.pt. Accessed 29 Jan 2021 Tyre4BuildIns, Research project Tyre4BuildIns - ‘Recycled tyre rubber resin-bonded for building insulation systems towards energy efficiency’, University of Coimbra, PT. www.​tyre4buildins.​dec.​uc.​pt. Accessed 29 Jan 2021
2.
Zurück zum Zitat Santos, P., Mateus, D.: Experimental assessment of thermal break strips performance in load-bearing and non-load-bearing LSF walls. J. Build. Eng. 32, 101693 (2020)CrossRef Santos, P., Mateus, D.: Experimental assessment of thermal break strips performance in load-bearing and non-load-bearing LSF walls. J. Build. Eng. 32, 101693 (2020)CrossRef
3.
Zurück zum Zitat ISO 9869-1: Thermal insulation – Building elements - In-situ measurement of thermal resistance and thermal transmittance. Part 1: Heat flow meter method. ISO - International Organization for Standardization, Geneva, Switzerland (2014) ISO 9869-1: Thermal insulation – Building elements - In-situ measurement of thermal resistance and thermal transmittance. Part 1: Heat flow meter method. ISO - International Organization for Standardization, Geneva, Switzerland (2014)
4.
Zurück zum Zitat Santos, P., Lemes, G., Mateus, D.: Thermal transmittance of internal partition and external facade LSF walls: a parametric study. Energies 12(14), 2671–2690 (2019)CrossRef Santos, P., Lemes, G., Mateus, D.: Thermal transmittance of internal partition and external facade LSF walls: a parametric study. Energies 12(14), 2671–2690 (2019)CrossRef
5.
Zurück zum Zitat Soares, N., Martins, C., Gonçalves, M., Santos, P., Simões da Silva, L., Costa, J.J.: Laboratory and in-situ non-destructive methods to evaluate the thermal transmittance and behaviour of walls, windows, and construction elements with innovative materials: a review. Energy Build. 182, 88–110 (2019) Soares, N., Martins, C., Gonçalves, M., Santos, P., Simões da Silva, L., Costa, J.J.: Laboratory and in-situ non-destructive methods to evaluate the thermal transmittance and behaviour of walls, windows, and construction elements with innovative materials: a review. Energy Build. 182, 88–110 (2019)
Metadaten
Titel
Performance of Thermal Break Strips in Lightweight Steel Framed Walls
verfasst von
Telmo Ribeiro
Paulo Santos
Diogo Mateus
Copyright-Jahr
2021
DOI
https://doi.org/10.1007/978-3-030-75315-3_43