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Risk Management Model in ISO-standards as the Implementation of Environmental Safety for Housing Construction

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The authors analyse the standardisation of risk management as an effective tool for the safety of design solutions in residential construction. The analysed regulatory documentation answers the question of achieving an acceptable level of risk. Within the framework of improving environmental management, the use of specific penalties looks quite natural. However, the primary purpose of ISO 14001 is to form a responsible attitude toward the environment and natural resources as the most crucial assets of economic activity. The article raises the issue that domestic standards cannot thoroughly guide risk analysts due to their lack of development and inconsistency with ISO 31000:2018 and ISO 14001:2016. It is necessary to develop a unique approach to risk assessment, de facto describing the interaction of different scenarios, which will ensure an increase in the environmental and economic effects in the field of housing safety.
Rocznik
Tom
Strony
282--288
Opis fizyczny
Bibliogr. 19 poz., rys.
Twórcy
  • Saint Petersburg State University of Architecture and Civil Engineering, Russia
  • National Research University – Moscow State University of Civil Engineering, Russia
  • Koszalin University of Technology, Poland
  • Saint Petersburg State University of Architecture and Civil Engineering, Russia
Bibliografia
  • Bas, E. (2019). Basics of Probability and Stochastic Processes. Cham: Springer.
  • Crispin, G. (2020). The essence of risk identification in project risk management: An overview. International Journal of Science and Research, 9(2), 1553-1557. https://doi.org/10.21275/SR20215023033
  • de Melo, F.J.C., de Medeiros, D.D. (2020). Applying interpretive structural modelling to analyse the fundamental concepts of the management excellence model guided by the risk-based thinking of ISO 9001: 2015. Human and Ecological Risk Assessment: An International Journal, 27(3), 742-772. https://doi.org/10.1080/10807039.2020.1752144
  • Dhir, S., Dhir, S. (2020). Modelling of strategic thinking enablers: A modified total interpretive structural modelling (TISM) and MICMAC approach. International Journal of System Assurance Engineering and Management, 11(1), 175-188. https://doi.org/10.1007/s13198-019-00937-z
  • Gadzhiyev, N.G., Konovalenko, S.A., Trofimov, M.N., Gadzhiyev, A.N. (2021). Rol' i znacheniye ekologicheskoy bezopasnosti v sisteme obespecheniya ekonomicheskoy bezopasnosti gosudarstva [The role and importance of environmental safety in the system of ensuring the economic security of the state]. Yug Rossii: Ekologiya, Razvitiye, 16(3), 200-214. https://doi.org/10.18470/1992-1098-2021-3-200-214
  • Gallop, D., Willy, C., Bischoff, J. (2016). How to catch a black swan: Measuring the benefits of the premortem technique for risk identification. Journal of Enterprise Transformation, 6(2), 87-106. https://doi.org/10.1080/19488289.2016.1240118
  • Jones, A. (2019). Risk, Opportunity, Uncertainty and Other Random Models Working (Ser: Guides to Estimating & Forecasting, vol. V). Abingdon, Oxon: Routledge.
  • Kulentsan, A.L., Marchuk, N.A. (2022). Analysis of the impact of pollutants on humans and the environment. Izvestiya Vysshikh Uchebnykh Zavedeniy. Khimiya i Khimicheskaya Tekhnologiya, 65(1), 116-121. https://doi.org/10.6060/ivkkt.20226501.6531
  • Larionov, A., Nezhnikova, E., Smirnova, E. (2021). Risk assessment models to improve environmental safety in the field of the economy and organization of construction: A case study of Russia. Sustainability, 13(24), 13539. https://doi.org/10.3390/su132413539
  • Link, S., Naveh, E. (2016). Standardization and discretion does the environmental standard ISO 14001 lead to performance benefits? IEEE Transactions on Engineering Management, 53(4), 508-519. https://doi.org/10.1109/TEM.2006.883704
  • Nezhnikova, E., Larionov, A., Smirnova, E. (2021). Ecological risk assessment to substantiate the efficiency of the economy and the organization of construction. Human and Ecological Risk Assessment: An International Journal, 27(8), 2069-2079. https://doi.org/10.1080/10807039.2021.1949262
  • Pojasek, R.B. (2019). How New Risk Management Helps Leaders Master Uncertainty. New York: Business Expert Press.
  • Rausand, M., Haugen, S. (2020). Risk Assessment: Theory, Methods, and Applications. London: Wiley.
  • Sayigh, A. (2014). Sustainability, Energy and Architecture: Case Studies in Realizing Green Buildings. Oxford: Academic Press.
  • Smirnova, E. (2020). The use of the Monte Carlo method for predicting environmental risk in construction zones. Journal of Physics: Conf. Ser., 1614(1), 012083. https://doi.org/10.1088/1742-6596/1614/1/012083
  • Smirnova, E. (2021). Monte Carlo simulation of environmental risks of technogenic impact. In: E. Rybnov, P. Akimov, M. Khalvashi, E. Vardanyan (Eds.), Contemporary Problems of Architecture and Construction (pp. 355-360). London: CRC Press.
  • Smirnova, E., Larionova, Y., Mukhammedov, A. (2022b). Risk modeling in the national safety standards for the housing stock of Russia. AIP Conference Proceeding, 2657(1), 020032. https://doi.org/10.1063/5.0106719
  • Smirnova, E., Mamedov, S., Shkarovskiy, A. (2022a). Improving the environmental safety risk assessment in construction using statistical analysis methods. Rocznik Ochrona Środowiska, 24, 110-128. https://doi.org/10.54740/ros.2022.009
  • Smirnova, O.P., Vavilova, M.A. (2022). Osobennosti vnedreniya sistemy ekologicheskogo menedzhmenta v promyshlennosti [Features of the implementation of the environmental management system in the industry]. Yestestvenno-Gumanitarnyye Issledovaniya, 39(1), 303-308. https://doi.org/10.24412/2309-4788-2022-1-39-303-308
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ff3a1162-7437-4096-9190-6ed29caef694
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