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name link intern personenkennziffer 0 Eleonora Leonardi false 1 Marco Larcher false 2 Daniel Herrera-Avellanosa false 3 Anna Stefani false 4 Alexandra Troi https://www.hs-coburg.de/personen/prof-dr-alexandra-troi/ true - ⇄⧉0 => array (4)$post['autoren'][0]
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Hygrothermal characterization of a plaster with recycled materials used as interior insulation
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https://www.scienceopen.com/document_file/c18d42f9-6c19-4222-ad5d-cc42a1a15268/ScienceOpen/40..pdf
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<p>Interior insulation plays a key role in reducing the energy consumption of historic buildings. However, it might cause moisture accumulation<br>and must be thoroughly analyzed. The use of recycled materials allows for further reduction of environmental impact. This paper presents<br>the study of a new insulating plaster containing aerogel and recycled glass used as capillary active interior insulation system. Firstly, the<br>hygrothermal properties of the material are measured in laboratory to obtain a complete characterization. Laboratory tests results are post-<br>processed to obtain the data required as input by the simulation software. Finally, hygrothermal simulations are carried out to investigate<br>the material’s behavior in realistic application scenarios and to study how different input parameters affect the results.<br></p>
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Leonardi, Eleonora; Larcher, Marco; Herrera-Avellanosa, Daniel; Stefani, Anna; Troi, Alexandra (2023): Hygrothermal characterization of a plaster with recycled materials used as interior insulation. 2nd International Conference on Moisture in Buildings (ICMB23), 3-4 July 2023.
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Hygrothermal characterization of a plaster with recycled materials used as interior insulation
Interior insulation plays a key role in reducing the energy consumption of historic buildings. However, it might cause moisture accumulation
and must be thoroughly analyzed. The use of recycled materials allows for further reduction of environmental impact. This paper presents
the study of a new insulating plaster containing aerogel and recycled glass used as capillary active interior insulation system. Firstly, the
hygrothermal properties of the material are measured in laboratory to obtain a complete characterization. Laboratory tests results are post-
processed to obtain the data required as input by the simulation software. Finally, hygrothermal simulations are carried out to investigate
the material’s behavior in realistic application scenarios and to study how different input parameters affect the results.
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Autoren:
Eleonora Leonardi, Marco Larcher, Daniel Herrera-Avellanosa, Anna Stefani, Alexandra Troi
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