Risk Assessment of Airtightness of Building Envelope

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Abstract:

The paper deals with risk analysis of insufficient airtightness of the envelope construction. The risk analysis is a systematic and structured data processing to identify potential hazards. The main aim of paper is to qualified risks which arise from the danger, i.e. insufficiently airtight of the building envelope. The quality of airtight building envelope except for low energy consumption also minimizes the risk of damage to the structure associated with the spread of the heat, water vapor in the structure and fungal growth. The qualification of risks consists of choice of method and determinative indicators, input data and simulation of model with drawing results.

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657-665

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January 2016

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[1] M. Kraus, The Determinative Factors of Airtightness of Energy Efficient Buildings (Determinační faktory vzduchotěsnosti energeticky efektivních budov), PhD Dissertation, VSB - Technical University of Ostrava, Faculty of Civil Engineering, Czech Republic, (2014).

DOI: 10.17973/mmsj.2022_10_2022070

Google Scholar

[2] Information on http: /www. passiv. de.

Google Scholar

[3] M. Kraus, D. Kubečková, Airtightness of Energy Efficient Buildings, in: 1st Annual International Conference on Architecture and Civil Engineering, Global Science and Technology Forum, Singapore, 2013, p.29 – 35.

DOI: 10.5176/2301-394x_ace13.10

Google Scholar

[4] J. Novák, Airtightness of Building Cladding (Vzduchotěsnost obvodových plášťů budov), Grada, Prague, (2008).

Google Scholar

[5] ČSN EN 13829 Thermal performance of building - Determination of air permeability of buildings - Fan pressurization method, 2001, Czech Office for Standards, Metrology and Testing.

Google Scholar

[6] Information on http: /www. passivhaustagung. de/Passive_House_E/airtightness_06. html.

Google Scholar

[7] M. Talabis, J. Martin, Information Security Risk Assessment Toolkit: Practical Assessments through Data Collection and Data Analysis, first ed., Newnes, (2012).

DOI: 10.1016/b978-1-59-749735-0.00004-x

Google Scholar

[8] K. Kubečka, P. Vlček, D. Kubečková, D. Pieszka, Utilization of risk analysis methods in decision-making process on fitness of rehabilitation, Advanced Materials Research. Volume 899 (2014) 568-571.

DOI: 10.4028/www.scientific.net/amr.899.568

Google Scholar

[9] J. Hnilica, J. Fotr, Applied Risk Analysis in Financial Management and Investment Decisions (Aplikovaná analýza rizika ve finančním managementu a investičním rozhodování), first ed., Grada, Prague, (2009).

Google Scholar

[10] T. Kendrick, Identifying and Managing Project Risk: Essential Tools for Failure-Proofing Your Project, third ed., AMACOM Div American Mgmt Assn, (2015).

Google Scholar

[11] C. R. Pandian, Applied Software Risk Management: A Guide for Software Project Managers, CRC Press, Boca Raton, (2006).

Google Scholar

[12] Information on http: /www. betterprojects. net.

Google Scholar

[13] A. M. Doro-on, Risk Assessment and Security for Pipelines, Tunnels, and Underground Rail and Transit Operations, CRC Press, Boca Raton, (2014).

DOI: 10.1201/b17047

Google Scholar