FAQ

Distribution of the temperature factor in terms of building envelope protection against mould growth

Data publikacji: 04.12.2015

Czasopismo Techniczne, 2015, Budownictwo Zeszyt 1-B (11) 2015, s. 3 - 16

https://doi.org/10.4467/2353737XCT.15.074.3874

Autorzy

,
Jacek Boroń
Faculty of Civil Engineering, Wrocław University of Technology
Wszystkie publikacje autora →
Kazimierz Marszałek
Faculty of Civil Engineering, Wrocław University of Technology
Wszystkie publikacje autora →

Tytuły

Distribution of the temperature factor in terms of building envelope protection against mould growth

Abstrakt

This paper describes the criterion for the protection of building envelopes against the growth of mould. As a criterion for assessing the risk to envelopes, the fRsi temperature factor is adopted. The paper provides the resultant temperature factor fRsi,max for the critical month in 61 areas in Poland for which typical year-long meteorological data is available on the website of the Ministry of Infrastructure and Development. While calculating the temperature factor, various room humidity classes were taken into account. The results of calculations of the temperature factor fRsi,max have been illustrated with isolines drawn for the whole area of Poland.

Bibliografia

[1] Fischer H.M., Jenish R., Klopfer H., Freymuth H., Richter E., Petzold K., Lehrbuch der Bauphysik, B.G. Teubner, Stuttgart 1997.

[2] Klemm P. (ed.), Building Construction, Vol. 2, Arkady, Warszawa 2005 (in Polish).

[3] Sanders C., Thermal Bridges at Junctions and Openings, UK conference on thermal bridging, Part L & Thermal Bridging – Getting In Right”, BRE Garston UK, 24th May 2002.

[4] Narowski P., Climatic data for building energy calculations in Energy and buildings, 2008, 9 (18), 18-24, 9 (in Polish).

[5] Schellen H., Thermal insulation and moisture problems, Eindhoven University of Technology. Text of the presentation at the Spring School of Building and Environmental Physics, Karpacz 1991.

[6] Regulation of the Minister of Infrastructure dated 12 April 2002 (as amended) on the technical conditions to be met by buildings and their location (Journal of Laws No. 690, pos. 75).

[7] Regulation of the Minister of Infrastructure dated 6 November 2008 (as amended) on the technical conditions to be met by buildings and their location (Journal of Laws No. 201, pos. 1238).

[8] PN-EN ISO 13788:2003 ‒ Hygrothermal Performance of Building Components and Building Elements. Internal Surface Temperature to Avoid Critical Surface Humidity and Interstitial Condensation - Calculation Methods.

[9] PN-EN ISO 10211:2008 ‒ Thermal Bridges In Building Construction ‒ Heat Flows and Surface Temperatures - Detailed Calculations.

[10] PN-EN ISO 6946:2008 ‒ Building Components and Building Elements ‒ Thermal Resistance and Thermal Transmittance ‒ Calculation Method.

[11] http://www.mir.gov.pl/budownictwo/rynek_budowlany_i_technika/efektywnosc_energetyczna_budynkow/typowe_lata_meteorologiczne/strony/start.aspx

Informacje

Informacje: Czasopismo Techniczne, 2015, Budownictwo Zeszyt 1-B (11) 2015, s. 3 - 16

Typ artykułu: Oryginalny artykuł naukowy

Tytuły:

Polski:

Distribution of the temperature factor in terms of building envelope protection against mould growth

Angielski:

Distribution of the temperature factor in terms of building envelope protection against mould growth

Autorzy

Faculty of Civil Engineering, Wrocław University of Technology

Faculty of Civil Engineering, Wrocław University of Technology

Publikacja: 04.12.2015

Status artykułu: Otwarte __T_UNLOCK

Licencja: Żadna

Udział procentowy autorów:

Jacek Boroń (Autor) - 50%
Kazimierz Marszałek (Autor) - 50%

Korekty artykułu:

-

Języki publikacji:

Angielski