Have a personal or library account? Click to login

The Hazards Occurring During the Construction and Reconstruction of Metal Structures

Open Access
|Dec 2023

References

  1. Bajwoluk T., 2021. Planning of areas in the vicinity of large industrial plants, Technical Transactions, 118, art. e2021027. DOI: 10.37705/TechTrans/e2021027
  2. Bartlett, L., Martin, A., Neil, A. L., Memish, K., Otahal, P., Kilpatrick, M., & Sanderson, K. (2019). A systematic review and meta-analysis of workplace mindfulness training randomized controlled trials. Journal of occupational health psychology, 24(1), 108.
  3. Chong, D., Yu, A., Su, H., & Zhou, Y. (2022). The Impact of Emotional States on Construction Workers’ Recognition Ability of Safety Hazards Based on Social Cognitive Neuroscience. Frontiers in psychology, 13, 895929
  4. Chrzan T., 2021. A method for determining the financial cost of damage to buildings caused by seismic ground vibrations, Technical Transactions, 118, art. e2021022. DOI: 10.37705/TechTrans/e2021022
  5. Ciecińska, B. and Oleksiak, B. "The use of quality management tools to ensure safe working conditions at CO2 laser workstations" Production Engineering Archives, vol.29, no.4, 2023, pp.393-400. https://doi.org/10.30657/pea.2023.29.44
  6. Cieśliński K., Malaga-Toboła U., 2021. Impact of thermal renovation on selected characteristics of partition walls and the consumption of heat energy, Technical Transactions, 118, art. e2021018. DOI: 10.37705/TechTrans/e2021018
  7. Develi, A. (2020). Identifying Structural Hazards in Building Construction Projects: A research into structural failure databases and risk assessments.
  8. Fang, W., Ma, L., Love, P. E., Luo, H., Ding, L., & Zhou, A. O. (2020). Knowledge graph for identifying hazards on construction sites: Integrating computer vision with ontology. Automation in Construction, 119
  9. Hou, L., Wu, S., Zhang, G., Tan, Y., & Wang, X. (2020). Literature review of digital twins applications in construction workforce safety. Applied Sciences, 11(1), 339.
  10. Ingaldi, M., Dziuba, S., 2016. Supervisor's Assessment as an Element Effecting Technological Process in Chosen Metallurgical Company, 25th International Conference on Metallurgy and Materials, Ostrava, Tanger, 289-294.
  11. Kasner, R., Flizikowski, J., Tomporowski, A., Kruszelnicka, W., Idzikowski, A., 2019. Ecological Efficiency Assessment Model for Environmental Safety Management of Wind Power Plant, System Safety: Human - Technical Facility - Environment, 1, 371-377. DOI: 10.2478/czoto-2019-0047
  12. Klimecka-Tatar, D., & Ingaldi, M. (2022). Digitization of processes in manufacturing SMEs-value stream mapping and OEE analysis. Procedia Computer Science, 200, 660-668.
  13. Klimecka-Tatar, D., & Matevž, O. (2020). The Level of Occupational Health and Safety in European Enterprises Providing Transport and Logistics Services in Terms of Quality Management Principles. Multidisciplinary Aspects of Production Engineering, 3(1), 394-404.
  14. Klimecka-Tatar, D., Ulewicz, R., & Ingaldi, M. (2023). Minimizing occupational risk by automation of the special processes-based on occupational risk assessment. Procedia Computer Science, 217, 1145-1152.
  15. Knutson, B., & Huettel, S. A. (2015). The risk matrix. Current Opinion in Behavioral Sciences, 5, 141-146.
  16. Krynke, M., Knop, K., Mazur, M., 2022. Maintenance management of large-size rolling bearings in heavy-duty machinery, Acta Montanistica Slovaca, 27(2), 327-341. DOI: 10.46544/AMS.v27i2.04
  17. Kuciel, S., Bazan, P., Liber-Kneć, A., Gadek-Moszczak, A., 2019. Physico-mechanical properties of the poly(oxymethylene) composites reinforced with glass fibers under dynamical loading, Polymers, 11(12), art. 2064. DOI: 10.3390/polym11122064
  18. Kuzior, A., 2022. Technological Unemployment in the Perspective of Industry 4.0 Development, Virtual Economics, 5(1), 7-23. DOI: 10.34021/VE.2022.05.01(1)
  19. Kuzior, A., Staszek, M., 2021. Energy management in the railway industry: A case study of rail freight carrier in Poland, Energies, 14(21), art.6875-. DOI: 10.3390/en14216875
  20. Kuzior, A., Zozul'ak, J., 2019. Adaptation of the Idea of Phronesis in Contemporary Approach to Innovation, Management Systems in Production Engineering, 27(2), 84-87. DOI: 10.1515/mspe-2019-0014
  21. Lee, H., Lee, G., Lee, S., & Ahn, C. R. (2021). Assessing exposure to slip, trip, and fall hazards by measuring construction worker loss of balance. In Computing in Civil Engineering 2021 (pp. 66-73).
  22. Liao, P. C., Sun, X., & Zhang, D. (2021). A multimodal study to measure the cognitive demands of hazard recognition in construction workplaces. Safety science, 133, 105010
  23. Mallakpour, S., Hussain, C. M., Ajith, S., & Arumugaprabu, V. (2021). Environmental and Occupational Health Hazards of Nanomaterials in Construction Sites. Handbook of Consumer Nanoproducts, 1-12
  24. Mazur, M., 2018. Analysis of production incompatibilities and risk level in series production of assembly elements for the automotive industry, MATEC Web of Conferences, 183, art. 03011. DOI: 10.1051/matecconf/201818303011
  25. Nedeliaková, Eva, Hranický, Michal Petr and Valla, Michal. "Risk identification methodology regarding the safety and quality of railway services" Production Engineering Archives, vol.28, no.1, 2022, pp.21-29. https://doi.org/10.30657/pea.2022.28.03
  26. Niciejewska, M., & Klimecka-Tatar, D. (2016). Evaluation of static load in dentists’ work by means of OWAS method. Czasopismo Techniczne, 2016(Mechanika Zeszyt 3-M (10) 2016), 125-130.
  27. Nnaji, C., & Karakhan, A. A. (2020). Technologies for safety and health management in construction: Current use, implementation benefits and limitations, and adoption barriers. Journal of Building Engineering, 29, 101212.
  28. Okpala, I., Nnaji, C., & Karakhan, A. A. (2020). Utilizing emerging technologies for construction safety risk mitigation. Practice Periodical on Structural Design and Construction, 25(2), 04020002.
  29. Ormaniec P., Mikosz J., 2022. A review of methods for the isolation of microplastics in municipal wastewater treatment, Technical Transactions, 119, art. e2022010. DOI: 10.37705/TechTrans/e2022010
  30. Pietraszek, J., Radek, N., Goroshko, A.V., 2020. Challenges for the DOE methodology related to the introduction of Industry 4.0, Production Engineering Archives, 26(4), 190-194. DOI: 10.30657/pea.2020.26.33
  31. Radek, N., Dwornicka, R., 2020. Fire Properties of Intumescent Coating Systems for the Rolling Stock, Communications - Scientific Letters of the University of Žilina, 22(4), 90-96. DOI: 10.26552/com.C.2020.4.90-96
  32. Sergey, K. (2021). Methodology for Building Automated Systems for Monitoring Engineering (Load-Bearing) Structures, and Natural Hazards to Ensure Comprehensive Safety of Buildings and Constructions. International Journal of Disaster Risk Management, 3(2), 1-10
  33. Shanti, M. Z., Cho, C. S., de Soto, B. G., Byon, Y. J., Yeun, C. Y., & Kim, T. Y. (2022). Real-time monitoring of work-at-height safety hazards in construction sites using drones and deep learning. Journal of safety research, 83, 364-370
  34. Sun, C., Hon, C. K., Way, K. A., Jimmieson, N. L., & Xia, B. (2022). The relationship between psychosocial hazards and mental health in the construction industry: A meta-analysis. Safety science, 145
  35. Twaróg B., 2023a. Modelling a pumped storage power plant on the example of the Porąbka Żar power plant, Technical Transactions, 120, art. e2023001. DOI: 10.37705/TechTrans/e2023001
  36. Twaróg B., 2023b. Modelling of the Solina-Myczkowce pumped storage power plant, Technical Transactions, 120, art. e2023002. DOI: 10.37705/TechTrans/e2023002
  37. Uddin, S. M., Albert, A., Alsharef, A., Pandit, B., Patil, Y., & Nnaji, C. (2020). Hazard recognition patterns demonstrated by construction workers. International Journal of Environmental Research and Public Health, 17(21), 7788.
  38. Ulewicz, R., Mazur, M., Bokůvka, O., 2013. Structure and mechanical properties of fine-grained steels, Periodica Polytechnica Transportation Engineering, 41(2), 111-115. DOI: 10.3311/PPtr.7110
  39. Ulewicz, R., Mazur, M., Knop, K., Dwornicka, R., 2020. Logistic controlling processes and quality issues in a cast iron foundry, Materials Research Proceedings, 17, 65-71. DOI: 10.21741/9781644901038-10
  40. Warzocha K., 2021. Rehearsal rooms in the context of Norwegian standard ns 8178:2014, Technical Transactions, 118, art. e2021028. DOI: 10.37705/TechTrans/e2021028
  41. Yadav, B. P., Vashishtha, S., & Mehta, D. (2022). Hazards and Risk with Heavy Machineries Operation at Construction Site: Preventive Approach. In Advances in Construction Safety: Proceedings of HSFEA 2020 (pp. 143-152). Singapore: Springer Nature Singapore
  42. Yang, K., Ahn, C. R., & Kim, H. (2019). Validating ambulatory gait assessment technique for hazard sensing in construction environments. Automation in Construction, 98, 302-309
  43. Zhang, M., Shi, R., & Yang, Z. (2020). A critical review of vision-based occupational health and safety monitoring of construction site workers. Safety science, 126, 104658
  44. Zhou, L., Song, H., Liang, J., Singer, M., Zhou, M., Stegenburgs, E., ... & Gan, Q. (2019). A polydimethylsiloxane-coated metal structure for all-day radiative cooling. Nature Sustainability, 2(8), 718-724.
Language: English
Page range: 151 - 159
Submitted on: Oct 26, 2023
Accepted on: Dec 6, 2023
Published on: Dec 29, 2023
Published by: Quality and Production Managers Association
In partnership with: Paradigm Publishing Services
Publication frequency: 1 times per year

© 2023 Adam Grodecki, Jacek Wołowczyk, Dorota Klimecka-Tatar, published by Quality and Production Managers Association
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.