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ORIGINAL ARTICLE

Fungal damages in Norwegian massive timber elements – a case study

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Pages 326-334 | Received 14 Aug 2019, Accepted 23 Jul 2020, Published online: 11 Aug 2020

References

  • Aarstad, J. and Glasø, G. (2008) Massivtre. Fokus på tre 20 (Massive wood. Wood focus series nr. 20. In Norwegian) (Oslo: Norwegian Institute of Wood Technology). Available at: http://www.treteknisk.no/resources/filer/publikasjoner/fokus-pa-tre/Fokus-nr-20.pdf.
  • Aasheim, E. (2006) Håndbok – bygge med massivtre (Handbook – building with massive timber elements. In Norwegian) (Oslo: Norwegian Institute of Wood Technology).
  • Aasheim, B. L. and Lier, B. (2017) Markedsanalyse massivtremarkedet i Norge 2017–2024 (Market analysis massive timber market in Norway. In Norwegian) Trebruk AS, Vestby. Accessed 14 August 2019, available at: http://arenaskog.no/wp-content/uploads/2017/06/markedsanalyse-massivtre-280217.pdf.
  • Aasheim, B. L. and Lier, B. (2020) Markedsanalyse KL-tre markedet i Norge 2020–2030 (Market analysis CLT market in Norway. In Norwegian) Trebruk AS, Vestby. Accessed 21 July 2020, available at: https://www.viken.skog.no/files/documents/brosjyrer/markedsanalyse-230120.pdf.
  • Alfredsen, G., Solheim, H. and Jenssen, K. M. (2006) Evaluation of decay fungi in Norwegian buildings. IRG/WP 05-10562, 12 pp. International Research Group for wood protection, 37th Annual Meeting, Tromsø, Norway 2006.
  • ASTM (2000) Standard test method for determining the resistance of paint films and related coatings to fungal defacement by accelerated four-week agar plate assay. ASTM Standard D-5990. ASTM, West Conshohocken, United States.
  • Åsbø, A. and Testad, E. S. (2017) Drying and risk of mould growth after water damage in horizontal timber roof elements (In Norwegian, English abstract). Master thesis, Norwegian University of Life Sciences, Ås. Available at: https://brage.bibsys.no/xmlui/handle/11250/2499521.
  • Becher, R. (2013) Anbefalte faglige normer for inneklima. Revisjon av kunnskapsgrunnlag og normer (Recommended norms for indoor climate. Revision of knowledge base and norms. In Norwegian) (Oslo: The Norwegian Institute of Public Health).
  • Bergen municipality, about Bergen municipality. (2019) Numbers that describe the climate in Bergen. In Norwegian. Accessed 14 August 2019, available at: https://www.bergen.kommune.no/omkommunen/fakta-om-bergen/6123/article-63579.
  • Bergström, E. and Fröbel, J. (2019) The CLT Handbook. CLT Structures – Facts and Planning (Stockholm: Swedish Wood).
  • Brandner, R., Flatcher, G., Ringhofer, A., Schickhofer, G. and Thiel, A. (2016). Cross laminated timber (CLT): overview and development. European Journal of Wood Products, 74, 331–351. doi: 10.1007/s00107-015-0999-5
  • Espinoza, O., Trujillo, V. R., Mallo, M. F. L. and Buehlmann, U. (2016) Cross-laminated timber: status and research needs in Europe. BioResources, 11(1), 281–295.
  • Grasser, K. K. (2015) Development of cross laminated timber in the United States of America. Master thesis, University of Tennessee, Knoxville.
  • Hansen, L. and Knudsen, H. (1992) Nordic Macromycetes, vol. 2. Polyporales, boletales, Agaricales, russulales (Copenhagen: Nordsvamp).
  • Hansen, L. and Knudsen, H. (1997) Nordic Macromycetes, vol. 3. Heterobasidioid, aphyllophoroid and gastromycetoid basidiomycetes (Nordsvamp: Copenhagen).
  • Karacabeyli, E. and Douglas, B. (2013) CLT Handbook: Cross-laminated Timber. U.S. edition. Special publication SP-529E. Co-published by U.S. Dep. Of Agriculture, Forest Service, Forest Products Laboratory, Binational Softwood Lumber Council. FPInnovations, Quebec.
  • Kristensen, T. (2001) Massive treelementer. Typer og bruksområder. SINTEF Byggforskserien Detaljblad 520.205. (Massive timber elements. Types and uses. Code of practice no. 520.205. In Norwegian) SINTEF Building and Infrastructure, Oslo.
  • Kukk, V., Horta, R., Püssa, M., Luciani, G., Kallakas, H., Kalamees, T. and Kers, J. (2017) Impact of cracks to the hygrothermal properties of CLT water vapour resistance and air permeability. In Proceedings of the 11th Symposium on Building Physics, NSB 2017, Trondheim, Norway.
  • Lepage, R. T. M. (2012) Moisture Response of Wall Assemblies of Cross-Laminated Timber Construction in Cold Canadian Climates. Master Thesis, University of Waterloo, Ontario.
  • Li, H., Wang, B. J., Wei, P. and Wang, L. (2019). Cross-laminated Timber (CLT) in China: A State-of-the-Art. Journal of Bioresources and Bioproducts, 4(1), 22–30.
  • Mamen, J. (2020a) Köppens klimaklassifikasjon i Store norske leksikon på snl.no (Köppen’s climate classification with map of Norway. In Norwegian). Accessed 30 May 2020, available at https://snl.no/K%C3%B6ppens_klimaklassifikasjon.
  • Mamen, J. (2020b) Normalperiode i Store norske leksikon på snl.no. (Normal climate period. In Norwegian) Accessed 21 July 2020, available at: https://snl.no/normalperiode.
  • Mayo, J. (2015) Solid Wood: Case Studies in Mass Timber Architecture, Technology and Design (Milton Park: Routledge), 346 pp.
  • McClung, V. R. (2013) Field study of hygrothermal performance of cross-laminated timber wall assemblies with built-in moisture. Thesis and dissertation Paper 1059. Ryerson University, USA.
  • NBA (2017) Veiledning til tekniske krav til byggverk (Guidelines to regulations on technical requirements for construction works. In Norwegian). Norwegian Building Authority, Oslo. Accessed 24 May 2020, available at: https://dibk.no/byggereglene/byggteknisk-forskrift-tek17/.
  • Nore, K., Mattsson, J. and Austigard, M. S. (2014) Cross laminated timber vs. timber frame walls in water damage – comparing drying and mould growth. In Proceedings of the 10th Nordic Symposium on Building Physics, NSB 2014, Lund, Sweden.
  • Nunez, M., Sivertsen, M. S. and Mattsson, J. (2012) Growth preferences on substrate, construction and room location for indoor moulds and Actinomycetes. In Proceedings of Healthy buildings 2012, Brisbane. Pp. 1-6.
  • Öberg, J. and Wiege, E. (2018) Moisture risks with CLT-panels subjected to outdoor climate during construction – focus on mould and wetting processes. 111 pp., Master thesis, KTH Royal Institute of Technology, Stockholm.
  • Ryvarden, L., Melo, I. and Niemelä, T. (2017) Poroid Fungi of Europe, 2nd edition. Synopsis Fungorum 31, FUNGIFLORA, Oslo.
  • Schmidt, O. (2007) Indoor wood-decay basidiomycetes: damage, causal fungi, physiology, identification and characterization, prevention and control. Mycological Progress, 6(4), 261–279. doi: 10.1007/s11557-007-0534-0
  • Schmidt, E. and Riggio, M. (2019) Monitoring moisture performance of cross-laminated timber building elements during construction. Buildings, 9, 144.
  • Skogstad, H. B., Gullbrekken, L. and Nore, K. (2011a) Air leakages through cross laminated timber (CLT) constructions. In Proceedings of the 9th Nordic Symposium on Building Physics, NSB 2011, Tampere, Finland.
  • Skogstad, H. B., Gullbrekken, L. and Uvsløkk, S. (2011b) Massivtre – Luftgjennomgang og behov for sperresjikt (Massive timber – air leaks and need of barrier layers. In Norwegian). Project report 81, SINTEF Building and Infrastructure, Trondheim.
  • Srisgantharajah, J. and Ullah, S. (2015). En studie av fuktinnhold i massivtre: oppfuktings- og uttørkingsprosessen. A study of water content in cross- laminated timber - The wetting- and drying process. (In Norwegian). 172 pp., Master thesis, NMBU Norwegian University of Life Sciences, Ås.
  • Standards Norway (1989) Field test method for determining the relative protective effectiveness of a wood preservative in ground contact. NS-EN 252, Standards Norway, Oslo.
  • Standards Norway (2012) Condition survey of construction works – content and execution. NS 3424:2012, Standards Norway, Oslo.
  • Standards Norway (2014) Måling av fukt i trekonstruksjoner (Measurement of moisture in timber structures. In Norwegian). NS 3512:2014, Standards Norway, Oslo.
  • Viitanen, H. and Ritschkoff, A.-C. (1991) Brown rot decay in wooden constructions. Effect of temperature, humidity and moisture. Report no. 222. Sveriges Lantbruksuniversitet, Institutionen för virkeslära, Ultuna.
  • Viitanen, H. and Salonvaara, M. (2001) Failure criteria. In Trechsel, H. (ed.) Moisture Analysis and Condensation Control in Building Envelopes, MNL40. ASTM USA. pp. 66–80.
  • Wang, J. (2016) Wetting and drying performance and on-site moisture protection of nail-laminated timber assemblies. FPInnovations, Canada. Available at: https://www.bchousing.org/research-centre/library/building-science-reports/nail-laminated-timber-protection&sortType=sortByDate.
  • Zabel, R. A. and Morrell, J. (1992) Wood Microbiology: Decay and Its Prevention (Cambridge, MA: Academic Press Ltd.).

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