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Analysis of the causes of construction accidents as a component of building safety management

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Managing safety in construction aims to ensure that buildings are safe for occupants and meet applicable safety standards. These actions help to mitigate potential hazards and provide protection for the lives and well-being of people within the building. This article analyzes the causes of construction disasters in Poland during the years 2020-2021, comparing them with data from 2015-2019. The disasters are categorized into two groups based on their causes: those triggered by random factors and those resulting from human error. Catastrophes arising from random factors account for 70 to 83% of all construction disasters.
Rocznik
Tom
Strony
217--227
Opis fizyczny
Bibliogr. 21 poz., rys., tab.
Twórcy
  • Kielce University of Technology, Poland
  • Czestochowa University of Technology, Poland
Bibliografia
  • 1. Act of 7 July 1994 on Construction Act. OJ 2010, No. 243, item1623 with further amendments.
  • 2. Anthopoulos, L.G., Kostavara, E. & Pantouvakis, J.-P. (2013) An effective disaster recovery model for construction projects. Procedia - Social and Behavioral Sciences, 74, 21-30.
  • 3. Bacharz, M., Bacharz, K. & Raczkiewicz, W. (2022) Szacowanie odkształceń skurczowych w fibrobetonie w świetle wybranych norm. Inżynieria i Budownictwo, 11-12/22, 558-563.
  • 4. Blikharskyy, Z., Khmil, R. & Vegera, P. (2017) Shear strength of reinforced concrete beams strengthened by PBO fiber mesh under loading. MATECweb of Conferences, 116, 02006.
  • 5. Boadu, E.F., Wang, C.C. & Sunindijo, R.Y. (2020) Characteristics of the construction industry in developing countries and its implications for health and safety: An exploratory study in Ghana. International Journal of Environmental Research and Public Health, 17, 4110.
  • 6. Czajkowska, A. & Ingaldi, M. (2017) Analysis of the impact of individual phases in the building process cycle on the environment with respect to the principles of sustainable development. IOP Conference Series Earth and Environmental Science, 214,012012.
  • 7. Czajkowska, A. & Ingaldi, M. (2021) Structural failures risk analysis as a tool supporting corporate responsibility. Journal of Risk and Financial Management, 14(4), 187.
  • 8. Ennouri, W. (2015) Risk management applying fmeasteg case study. Polish Journal of Management Studies, 11(1), 56-67.
  • 9. Fidlerova, H., Poplawski, L. & Surowka, M. (2022) Replacement of the expanded polystyrene with polyethylene in the packaging. Przemysł Chemiczny, 100(5), 432-435.
  • 10. https://www.gunb.gov.pl
  • 11. Khmil, R., Blikharskyy, Z., Vegera, P. & Kopiika, N. (2023) Bearing capacity of reinforced concrete beams with and without damages of rebar. Production Engineering Archives, 29(3), 298-303.
  • 12. Kopiika, N., Vegera, P., Vashkevych, R. & Blikharskyy, Z. (2021) Stress-strain state of damaged reinforced concrete bended elements at operational load level. Production Engineering Archives, 27(4), 242-247.
  • 13. Kovácsné Mozsár, A.L. & Michelberger, P. (2018) IT risk management and application portfolio management. Polish Journal of Management Studies, 17(2), 112-122.
  • 14. Kraus, P., Náprstková, N., Jirounková, K., Cais, J. & Svobodová, J. (2018) Effect of heat treatment on the microstructure of the alloy AlSi7CrMnCu2.5. Manufacturing Technology, 18(6), 935-942.
  • 15. Krynke, M., Ivanova, T.N. & Revenko, N.F. (2022) Factors, increasing the efficiency of work of maintenance, repair and operation units of industrial enterprises. Management Systems in Production Engineering, 30(1), 91-97.
  • 16. Kucharikova, L., Mazur, M., Tillova, E., Chalupova, M., Zavodska, D. & Vasko, A. (2019) Fracture surfaces of the secondary A226 cast alloy with 0.9% Fe. Engineering Failure Analysis, 105, 688-698.
  • 17. Kumor-Sulerz, A. & Michta, D. (2022) Intellectual innovation in the manufacturing enterprise – case study. International Business Information Management, 1-10.
  • 18. Michałowska-Maziejuk, D. & Goszczyńska, B. (2023) Effectiveness of strengthening RC beams using composite materials - An accelerated strengthening method. Materials, 16(13), 4847.
  • 19. Pachura, A. (2012) Innovation theory – an epistemological aspect. Polish Journal of Management Studies, 5, 128-135.
  • 20. Szajnar, J., Walasek, A. & Baron, C. (2013) Tribological and corrosive properties of the parts of machines with surface alloy layer. Archives of Metallurgy and Materials, 58(3), 931-936.
  • 21. Szymczak-Graczyk, A. (2011) Obciążenie wiatrem budynków. Architectura, 10(4), 25-32.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-feb9cb12-c6da-426e-8713-e06ad379d59d
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