202
Views
2
CrossRef citations to date
0
Altmetric
Articles

Determining the effective factors leading to incidence of human error accidents in industrial parks construction projects: results of a fuzzy Delphi survey

, , &

References

  • Abdulkarimi ASE. 2018. Evaluation and prioritization of the minor empowerers of safety culture instruments in the construction industry using the AHP hierarchical analysis model. Conference on Civil Engineering, Architecture and Urban Planning of the Islamic World, Tabriz, University of Tabriz - Shahid Madani University of Azerbaijan - University of Applied Science and Technology of Tabriz Municipality. (In Persian).
  • Amiri M, Ardeshir A, Zarandi MHF. 2014. Risk-based analysis of construction accidents in Iran during 2007–2011-meta analyze study. Iran J Public Health. 43(4):507–522.
  • Ayhan BU, Tokdemir OB. 2020. Accident analysis for construction safety using latent class clustering and artificial neural networks. J Constr Eng Manage. 146(3):04019114.
  • Azhdari M, Monazami Tehrani G, Alibabaei A. 2017. Investigating the causes of human error-induced incidents in the maintenance operations of the petrochemical industry by using HFACS. johe. 3(4):22–30.
  • Bui TD, Tsai FM, Tseng ML, Ali MH. 2020. Identifying sustainable solid waste management barriers in practice using the fuzzy Delphi method. Resour Conserv Recycl. 154:104625.
  • Bussier MJP, Chong HY. 2022. Relationship between safety measures and human error in the construction industry: working at heights. Int J Occup Saf Ergon. 28(1):162–173.
  • Chan DWM, Baghbaderani AB, Sarvari H. 2022. An empirical study of the human error-related factors leading to site accidents in the Iranian urban construction industry. Buildings (Section: Construction Management, and Computers & Digitization). 12(11):1858.
  • Chan DWM, Cristofaro M, Nassereddine H, Yiu NSN, Sarvari H. 2021. Perceptions of safety climate in construction projects between workers and managers/supervisors in the developing country of Iran. Sustainability - Special Issue on Advances in Construction Safety Management Practices. 13(18):10398.
  • Chen CA, Lee SR. 2013. Developing the country brand of Taiwan from the perspective of exports. Asian J Empir Res. 3(9):1223–1236.
  • Chi S, Han S, Kim DY, Shin Y. 2015. Accident risk identification and its impact analyses for strategic construction safety management. J Civil Eng Manag. 21(4):524–538.
  • Cochran WG. 1954. The combination of estimates from different experiments. Biometrics. 10(1):101–129.
  • Dabiri M, Sarvari H, Chan DWM, Olawumi TO. 2022. Developing a hybrid risk assessment method for prioritizing the critical risks of temporary accommodation sites after destructive earthquakes. Habitat Int. 128:102667.
  • Dhalmahapatra K, Singh K, Jain Y, Maiti J. 2019. Exploring causes of crane accidents from incident reports using decision tree. In Information and communication technology for intelligent systems. Singapore: Springer. p. 175–183.
  • Garg H, Rani D. 2022. Novel distance measures for intuitionistic fuzzy sets based on various triangle centers of isosceles triangular fuzzy numbers and their applications. Expert Syst Appl. 191:116228.
  • Goh YM, Ubeynarayana CU. 2017. Construction accident narrative classification: an evaluation of text mining techniques. Accid Anal Prev. 108:122–130.
  • Hasanzadeh S, Esmaeili B, Dodd MD. 2017. Impact of construction workers’ hazard identification skills on their visual attention. J Constr Eng Manage. 143(10):04017070.
  • Hoła B, Szóstak M. 2017. Methodology of analysing the accident rate in the construction industry. Procedia Eng. 172:355–362.
  • Hollnagel E. 1998. Cognitive reliability and error analysis method (CREAM). Amsterdam, The Netherlands: Elsevier.
  • Ishikawa A, Amagasa M, Shiga T, Tomizawa G, Tatsuta R, Mieno H. 1993. The max-min Delphi method and fuzzy Delphi method via fuzzy integration. Fuzzy Sets Syst. 55(3):241–253.
  • Jahani F, Kamankesh M, Karimpour S. 2017. Identification and evaluation of human errors leading to accidents in one of the cement factories using HFACS method. 1st. International Conference of HSE Experts in Oil, Petrochemical, Steel and Cement Industries and Construction Projects, Shiraz. (In Persian).
  • Khosravi M, Sarvari H, Chan DWM, Cristofaro M, Chen Z. 2020. Determining and assessing the risks of commercial and recreational complex building projects in developing countries: a survey of experts in Iran. JFM. 18(3):259–282.
  • Lee CH, Wu KJ, Tseng ML. 2018. Resource management practice through eco-innovation toward sustainable development using qualitative information and quantitative data. J Cleaner Prod. 202:120–129.
  • Liao PC, Shi H, Su Y, Luo X. 2018. Development of data-driven influence model to relate the workplace environment to human error. J Constr Eng Manage. 144(3):04018003.
  • Liu M, Tang P, Liao PC, Xu L. 2020. Propagation mechanics from workplace hazards to human errors with dissipative structure theory. Saf Sci. 126:104661.
  • Love PE, Teo P, Ackermann F, Smith J, Alexander J, Palaneeswaran E, Morrison J. 2018. Reduce rework, improve safety: an empirical inquiry into the precursors to error in construction. Prod Plan Control. 29(5):353–366.
  • Malek MS, Gundaliya PJ. 2020. Negative factors in implementing public–private partnership in Indian road projects. Int J Constr Manag. 1–9. DOI: 10.1080/15623599.2020.1857672.
  • Manu P, Poghosyan A, Agyei G, Mahamadu AM, Dziekonski K. 2021. Design for safety in construction in sub-Saharan Africa: a study of architects in Ghana. Int J Constr Manag. 21(4):382–394.
  • Mohajeri S, Nakhlestani Hagh S, Harsaj F. 2017. Risk management in road project implementation with emphasis on ergonomic principles. J Sci Eng Elites. 2(2):264–255.
  • Mohseni PH, Farshad AA, Mirkazemi R, Orak RJ. 2015. Assessment of the living and workplace health and safety conditions of site-resident construction workers in Tehran, Iran. Int J Occup Saf Ergon. 21(4):568–573.
  • Morais C, Moura R, Beer M, Patelli E. 2018. Human reliability analysis—accounting for human actions and external factors through the project life cycle. Boca Raton, FL: CRC Press. p. 329–338.
  • Morais C, Moura R, Beer M, Patelli E. 2020. Analysis and estimation of human errors from major accident investigation reports. ASCE-ASME J Risk Uncert Eng Sys B Mech Eng. 6(1):011014.
  • Moura R, Beer M, Patelli E, Lewis J. 2017. Learning from major accidents: graphical representation and analysis of multi-attribute events to enhance risk communication. Saf Sci. 99:58–70.
  • Moura RN. 2017. Learning from accidents: human errors, preventive design and risk mitigation. Liverpool (UK): The University of Liverpool.
  • Muneeswaran G, Manoharan P, Awoyera PO, Adesina A. 2020. A statistical approach to assess the schedule delays and risks in Indian construction industry. Int J Constr Manag. 20(5):450–461.
  • Neumann CS, Kosson DS, Salekin RT. 2017. Exploratory and confirmatory factor analysis of the psychopathy construct: methodological and conceptual issues. In The psychopath: theory, research, and practice. New York: Routledge. p. 79–104.
  • Park J, Lee H, Kim HY. 2022. Risk factor recognition for automatic safety management in construction sites using fast deep convolutional neural networks. Appl Sci. 12(2):694.
  • Rafieyan A, Sarvari H, Chan DWM. 2022. Identifying and evaluating the essential factors affecting the incidence of site accidents caused by human errors in industrial parks construction projects. IJERPH - Special Issue on “Human Factors and Ergonomics: Bridging the Gap between Research and Practice in Occupational Safety and Health”. 19(16):10209.
  • Rivera RAI, Arthur JV, Cassidy AS, Jackson BL, Merolla PA, Modha DS, Sawada J. 2018. U.S. Patent No. 9,924,490. Washington, DC: U.S. Patent and Trademark Office.
  • Salimi F. 2017. Strategic accident assessment and management of construction projects using the Phillips model and providing solutions to reduce accidents. 3rd Annual Conference on Architectural, Urban Planning and Urban Management Research, Shiraz, Mehrazi Ambassadors Institute of Architecture and Urban Planning.
  • Sarvari H, Chan DWM, Alaeos AKF, Olawumi TO, Aldaud AAA. 2021. Critical success factors for managing construction small and medium-sized enterprises in developing countries of Middle East: evidence from Iranian construction enterprises. J Build Eng. 43:103152.
  • Sarvari H, Cristofaro M, Chan DWM, Noor NM, Amini M. 2020. Completing abandoned public facility projects by the private sector: results of a Delphi survey in the Iranian Water and Wastewater Company. JFM. 18(5):547–566.
  • Sarvari H, Rakhshanifar M, Tamošaitienė J, Chan DWM, Beer M. 2019. A risk based approach to evaluating the impacts of Zayanderood Drought on sustainable development indicators of riverside Urban in Isfahan-Iran. Sustainability - Special Issue on Sustain Risks Constr Manag. 11(23):6797.
  • Shao B, Hu Z, Liu Q, Chen S, He W. 2019. Fatal accident patterns of building construction activities in China. Saf Sci. 111:253–263.
  • Shi Y, Du J, Ahn CR, Ragan E. 2019. Impact assessment of reinforced learning methods on construction workers’ fall risk behavior using virtual reality. Autom Constr. 104:197–214.
  • Song Y, Wang J, Liu D, Guo F. 2022. Study of occupational safety risks in prefabricated building hoisting construction based on HFACS-PH and SEM. IJERPH. 19(3):1550.
  • Sorkhabi OM, Shadmanfar B, Kiani E. 2022. Monitoring of dam reservoir storage with multiple satellite sensors and artificial intelligence. Results Eng. 16:100542.
  • Sudani A. 2018. Investigating William Fine risk assessment techniques. The Second National Conference on Science and Technology of Agricultural Sciences, Natural Resources and Environment of Iran, Tehran, Sam Iranian Institute for Organizing Knowledge and Technology Development Conferences.
  • Tamošaitienė J, Khosravi M, Cristofaro M, Chan DWM, Sarvari H. 2021. Identification and prioritization of critical risk factors of commercial and recreational complex building projects: a Delphi study using the TOPSIS method. Appl Sci (Section: Civil Eng) - Special Issue on Probabilistic and Fuzzy Approaches for Estimating the Life Cycle Costs of Buildings. 11(17):7906.
  • Tixier AJP, Hallowell MR, Rajagopalan B, Bowman D. 2017. Construction safety clash detection: identifying safety incompatibilities among fundamental attributes using data mining. Autom Constr. 74:39–54.
  • Toole TM, Gambatese JA, Abowitz DA. 2017. Owners’ role in facilitating prevention through design. J Prof Issues Eng Educ Pract. 143(1):04016012.
  • Wieland A, Durach CF, Kembro J, Treiblmaier H. 2017. Statistical and judgmental criteria for scale purification. Supply Chain Manag. 22(4):321–328.
  • Xia N, Zou PX, Liu X, Wang X, Zhu R. 2018. A hybrid BN-HFACS model for predicting safety performance in construction projects. Saf Sci. 101:332–343.
  • Xu S, Zhang M, Hou L. 2019. Formulating a learner model for evaluating construction workers’ learning ability during safety training. Saf Sci. 116:97–107.
  • Zhang F, Fleyeh H, Wang X, Lu M. 2019. Construction site accident analysis using text mining and natural language processing techniques. Autom Constr. 99:238–248.
  • Zhou H, Romero SB, Qin X. 2016. An extension of the theory of planned behavior to predict pedestrians’ violating crossing behavior using structural equation modeling. Accid Anal Prev. 95(Pt B):417–424.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.