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Original Articles

Durability and the factor method of ISO 15686-1

Pages 416-426 | Published online: 13 May 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Nurul Sakina Mokhtar Azizi, Suzanne Wilkinson & Elizabeth Fassman. (2014) Management practice to achieve energy-efficient performance of green buildings in New Zealand. Architectural Engineering and Design Management 10:1-2, pages 25-39.
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Aneurin Grant & Robert Ries. (2013) Impact of building service life models on life cycle assessment. Building Research & Information 41:2, pages 168-186.
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R. J. Kirkham & A. H. Boussabaine. (2005) Forecasting the residual service life of NHS hospital buildings: a stochastic approach. Construction Management and Economics 23:5, pages 521-529.
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Hywel Davies & David Wyatt. (2004) Appropriate use of the ISO 15686-1 factor method for durability and service life prediction. Building Research & Information 32:6, pages 552-553.
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Articles from other publishers (24)

Athnasious Ghaly, Mahmoud Amin, Tesfu Tedla, Ossama Hosny & Hatem Elbehairy. 2023. Proceedings of the Canadian Society of Civil Engineering Annual Conference 2022. Proceedings of the Canadian Society of Civil Engineering Annual Conference 2022 917 932 .
Ana Silva, Jorge de Brito, André Thomsen, Ad Straub, Andrés J. Prieto & Michael A. Lacasse. (2022) Causal Effects between Criteria That Establish the End of Service Life of Buildings and Components. Buildings 12:2, pages 88.
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M. Conde-García, M. Conde-García, J.A. Tenorio-Ríos & J. Fernández-Golfín. (2021) Experimental evaluation of the effect of different design conditions on the risk of decay in solid wood exposed to outdoor climate. Materiales de Construcción 71:342, pages e247.
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A. Silva & A.J. Prieto. (2021) Modelling the service life of timber claddings using the factor method. Journal of Building Engineering 37, pages 102137.
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Aysem Berrin Cakmakli. 2021. Research Anthology on Environmental and Societal Well-Being Considerations in Buildings and Architecture. Research Anthology on Environmental and Societal Well-Being Considerations in Buildings and Architecture 418 438 .
Reem Ahmed, Ahmed Assad, Eslam Mohammed Abdelkader, Tarek Zayed & Fuzhan Nasiri. (2020) Stochastic-based Deterioration Modeling of Elevators in Healthcare Facilities. Stochastic-based Deterioration Modeling of Elevators in Healthcare Facilities.
A Loli, C Bertolin & L Kotova. (2020) Service life prediction of building components in the times of climate change. IOP Conference Series: Materials Science and Engineering 949:1, pages 012048.
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Reem Ahmed, Tarek Zayed & Fuzhan Nasiri. (2020) A Hybrid Genetic Algorithm-Based Fuzzy Markovian Model for the Deterioration Modeling of Healthcare Facilities. Algorithms 13:9, pages 210.
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Aysem Berrin Cakmakli. 2020. Green Building Management and Smart Automation. Green Building Management and Smart Automation 90 110 .
Klodian Gradeci, Berit Time & Lars Gullbrekken. (2020) Risk-based Optimization of Sensor Distribution in Roof Constructions – A Conceptual Study. E3S Web of Conferences 172, pages 21008.
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A. JardimA. SilvaJ. de Brito. (2019) Application of the factor method to the service life prediction of architectural concrete. Canadian Journal of Civil Engineering 46:11, pages 1054-1062.
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Martin Morelli & Michael A. Lacasse. (2018) A systematic methodology for design of retrofit actions with longevity. Journal of Building Physics 42:4, pages 585-604.
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Siti Aisyah, Akhmad Aminullah & H. Muslikh. (2019) Prediction analysis of the degradation and the service life building components in artificial method neural network and ISO factor 15686-2. MATEC Web of Conferences 258, pages 03017.
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Alejandro Martínez-Rocamora, Jaime Solís-Guzmán & Madelyn Marrero. (2017) Ecological footprint of the use and maintenance phase of buildings: Maintenance tasks and final results. Energy and Buildings 155, pages 339-351.
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Maria Inês Serralheiro, Jorge de Brito & Ana Silva. (2017) Methodology for service life prediction of architectural concrete facades. Construction and Building Materials 133, pages 261-274.
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Andrés José Prieto Ibáñez, Juan Manuel Macías Bernal, María José Chávez de Diego & Francisco Javier Alejandre Sánchez. (2016) Expert system for predicting buildings service life under ISO 31000 standard. Application in architectural heritage. Journal of Cultural Heritage 18, pages 209-218.
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Sunday Julius Odediran, Job Taiwo Gbadegesin & Mujidat Olubola Babalola. (2015) Facilities management practices in the Nigerian public universities. Journal of Facilities Management 13:1, pages 5-26.
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M. Harrestrup & S. Svendsen. (2014) Heat planning for fossil-fuel-free district heating areas with extensive end-use heat savings: A case study of the Copenhagen district heating area in Denmark. Energy Policy 68, pages 294-305.
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Aneurin Grant, Robert Ries & Charles Kibert. (2014) Life Cycle Assessment and Service Life Prediction. Journal of Industrial Ecology 18:2, pages 187-200.
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Nurul Sakina Mokhtar AziziElizabeth FassmanSuzanne WilkinsonAdi Irfan Che Ani. (2013) Management Practice to Achieve Energy Efficiency Performance: Green versus Conventional Office Building in Malaysia. Journal of Legal Affairs and Dispute Resolution in Engineering and Construction 5:4, pages 205-214.
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Can B. Aktas & Melissa M. Bilec. (2011) Service life prediction of residential interior finishes for life cycle assessment. The International Journal of Life Cycle Assessment 17:3, pages 362-371.
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R.A. Mariño, X.C. Carreira, M.E. Fernández & C. Fernandez-Rodriguez. (2009) Durability of timber structures in agricultural and livestock buildings. Biosystems Engineering 104:1, pages 152-160.
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Pedro L. Gaspar & Jorge de Brito. (2008) Quantifying environmental effects on cement-rendered facades: A comparison between different degradation indicators. Building and Environment 43:11, pages 1818-1828.
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Sarel Lavy. (2008) Facility management practices in higher education buildings. Journal of Facilities Management 6:4, pages 303-315.
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