Chapter
Dec 13, 2022

Occupational Fatigue and Physical Health of Construction Workers in Extreme Hot Weather

Publication: Tran-SET 2022

ABSTRACT

Extreme hot temperatures are considered as occupational hazard. Workers performing for a longer duration in extreme heat are prone to develop various health complications. This is also indicated by increasing number of heat related morbidities and mortalities. Workers exposed to extreme temperatures experience serious health issues like heat cramps, heat edema, and mental health problems like depression. Workers are distracted when performing in extreme temperatures leading to workplace accidents, injuries, and lowers productivity. Health challenges experienced by workers differ based on demographic characteristics, and thus construction sites require strategies tailored to address these vulnerable workers. Therefore, this study focuses to assess workers’ health challenges based on various demographic features and develops a model for physical fatigue, workplace injuries of workers performing in extreme temperatures through an online survey questionnaire. Logistic regression was performed on the gathered data. The results revealed that Caucasians are more susceptible to adverse effects of hot weather compared to other ethnicities. A link can be suggested, based on the results of the study, among workers’ physical exhaustion and type of working environment, and ethnicity of workers in hot weather conditions. The findings of the study will facilitate professionals in construction industry to improve their heat related policies.

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REFERENCES

Abdulqader, Q. M. (2017). Applying the binary logistic regression analysis on the medical data. Science Journal of University of Zakho, 5(4), 330–334.
Acharya, P., Boggess, B., and Zhang, K. (2018). “Assessing heat stress and health among construction workers in a changing climate: A review.” International Journal of Environmental Research and Public Health. 15 (2). 247. https://doi.org/10.3390/ijerph15020247.
Adepu, N., Kermanshachi, S., and Pamidimukkala, A. Analysis of Impact of Covid-19 and Other Occupational Infectious Diseases on Construction of Transportation Projects. International conference on transportation and development (ICTD), 2022. Seattle, Washington.
Alshebani, M. N., and Wedawatta, G. Making the Construction Industry Resilient to Extreme Weather: Lessons from Construction in Hot Weather Conditions. Procedia Economics and Finance. 2014; 18:635–642.
Arbury, S., Lindsley, M., and Hodgson, M. (2016). A critical review of OSHA heat enforcement cases: lessons learned. Journal of Occupational and Environmental Medicine, 58(4), 359–363.
Bates, G., and Schneider, J. (2008). “Hydration status and physiological workload of UAE construction workers: A prospective longitudinal observational study.” Journal of Occupational Medicine and Toxicology (London, England), 3, 21. https://doi.org/10.1186/1745-6673-3-21.
CDC (Centers for Disease Control and Prevention). (2021). CDC’s Tracking Network in Action: Extreme Heat.
CDC (Centers for Disease Control and Prevention). (2021). Environmental health tracking program. Extreme heat days and events. Accessed From: https://ephtracking.cdc.gov/DataExplorer.
Dutta, P., Rajiva, A., Andhare, D., Azhar, G. S., Tiwari, A., Sheffield, P., and Ahmedabad Heat and Climate Study Group. (2015). “Perceived heat stress and health effects on construction workers.” Indian Journal of Occupational and Environmental Medicine, 19(3), 151.
El-Shafei, D. A., Bolbol, S. A., Awad Allah, M. B., et al. Exertional heat illness: knowledge and behavior among construction workers. Environ Sci Pollut Res. 2018; 25:32269–32276.
Field, A. (2009). Logistic regression. Discovering statistics using SPSS, 264, 315.
Fredericks Tycho, K., Abudayyeh, O., Choi Sang, D., Wiersma, M., and Charles, M. (2005). “Occupational Injuries and Fatalities in the Roofing Contracting Industry.” Journal of Construction Engineering and Management, 131(11), 1233–1240. https://doi.org/10.1061/(ASCE)0733-9364(2005)131:11(1233).
Grubenhoff, J. A., du Ford, K., and Roosevelt, G. E. (2007). “Heat-Related Illness.” Clinical Pediatric Emergency Medicine, 8(1), 59–64. https://doi.org/10.1016/j.cpem.2007.02.006.
Gubernot, D. M., Anderson, G. B., and Hunting, K. L. (2015). Characterizing occupational heat‐related mortality in the United States, 2000–2010: An analysis using the census of fatal occupational injuries database. American journal of industrial medicine, 58(2), 203–211.
Habibi, M., Kermanshachi, S., and Rouhanizadeh, B. (2019). Identifying and Measuring Engineering, Procurement, and Construction (EPC) Key Performance Indicators and Management Strategies. Infrastructures, 4(2), 14. https://doi.org/10.3390/infrastructures4020014.
Karthick, S., Kermanshachi, S., and Loganathan, K. (2022). “Impact of Construction Workers’ Physical Health and Respiratory Issues in Hot Weather: A Pilot Study.” Proceedings of the Transportation Consortium of South-Central States (Tran-SET) conference, Aug 2022.
Karthick, S., Kermanshachi, S., and Pamidimukkala, A. (2022). “Evaluation of Health Care Costs for Field Workers: Analysis of Extreme Weather Working Conditions.” In International Conference on Transportation and Development, 2022. Seattle, Washington, May 31-June 3, 2022.
Karthick, S., Kermanshachi, S., Pamidimukkala, A., and Namian, M. (2022). A review of construction workforce health challenges and strategies in extreme weather conditions, International Journal of Occupational Safety and Ergonomics. DOI: https://doi.org/10.1080/10803548.2022.2082138.
Karthick, S., Kermanshachi, S., and Pamidimukkala, A. Impact Analysis of Heat on Physical and Mental Health of Construction Workforce. International conference on transportation and development (ICTD), 2022. Seattle, Washington.
Karthick, S., Kermanshachi, S., and Ramaji, I. Health, and Safety of Construction Field Workforce Active in Extreme Weather Conditions. Proceedings of ASCE Construction Research Congress (CRC). Virginia, US, 2022. p. 737–747. DOI: https://doi.org/10.1061/9780784483985.075.
Karthick, S., Kermanshachi, S., Rouhanizadeh, B., and Namian, M. (2021). “Short-and Long-Term Health Challenges of Transportation Workforce due to Extreme Weather Conditions.” In Tran-SET 2021 (pp. 39–51). Reston, VA: American Society of Civil Engineers. DOI: https://doi.org/10.1061/9780784483787.005.
Kazar, G., and Comu, S. (2021). Exploring the relations between the physiological factors and the likelihood of accidents on construction sites. Engineering, Construction and Architectural Management.
Kermanshachi, S., and Sadatsafavi, H. (2018, July). Predictive modeling of US transportation workforce diversity trends: A study of human capital recruitment and retention in complex environments. In International Conference on Transportation and Development 2018: Planning, Sustainability, and Infrastructure Systems (pp. 105–114). Reston, VA: American Society of Civil Engineers. DOI: https://doi.org/10.1061/9780784483787.005.
Kermanshachi, S., Rouhanizadeh, B., and Dao, B. (2020), “Application of Delphi method in identifying, ranking, and weighting project complexity indicators for construction projects”, Journal of Legal Affairs and Dispute Resolution in Engineering and Construction, Vol. 12 No. 1, p. 04519033.
Kermanshachi, S., Nipa, T. J., and Dao, B. P. (2021). Development of complexity management strategies for construction projects. Journal of Engineering, Design and Technology. DOI:https://doi.org/10.1108/jedt-06-2021- 0324.
Khare, S., Hajat, S., Kovats, S., Lefevre, C. E., De Bruin, W. B., Dessai, S., and Bone, A. (2015). Heat protection behaviour in the UK: results of an online survey after the 2013 heatwave. BMC public health, 15(1), 1–12.
Kjellstrom, T., Briggs, D., Freyberg, C., Lemke, B., Otto, M., and Hyatt, O. Heat, Human Performance, and Occupational Health: A Key Issue for the Assessment of Global Climate Change Impacts. Annual Review of Public Health. Annual Reviews Inc. (2016), pp. 97–112.
Lohrey, S., Chua, M., Gros, C., Faucet, J., and Lee, J. K. (2021). Perceptions of heat-health impacts and the effects of knowledge and preventive actions by outdoor workers in Hanoi, Vietnam. Science of The Total Environment, 794, 148260.
Morioka, I., Miyai, N., and Miyashita, K. (2006). “Hot environment and health problems of outdoor workers at a construction site.” Industrial Health. 44 (3): 474–480. https://doi.org/10.2486/indhealth.44.474.
Nitschke, M., Hansen, A., Bi, P., Pisaniello, D., Newbury, J., Kitson, A., and Dal Grande, E. (2013). Risk factors, health effects and behaviour in older people during extreme heat: a survey in South Australia. International journal of environmental research and public health, 10(12), 6721–6733.
Pamidimukkala, A., Kermanshachi, S., and Safapour, E. (2020). Challenges in Post-Disaster Housing Reconstruction: Analysis of Urban vs. Rural Communities. In Creative Construction e-Conference 2020 (pp. 103–110). Budapest University of Technology and Economics.
Pinto, A., Nunes, I. L., and Ribeiro, R. A. Occupational risk assessment in construction industry—Overview and reflection. Safety Sci 2011; 49:616–624.
Pradhan, B., Shrestha, S., Shrestha, R., Pradhanang, S., Kayastha, B., and Pradhan, P. Assessing climate change and heat stress responses in the Tarai region of Nepal. Ind. Health, 51 (1) (2013), pp. 101–112.
Prakash, S. V., Clevenger, C., and Tummalapudi, M. (2022). Unmanned Aerial Systems in the US Construction Industry: Exploratory Study on Current State of Practice. EPiC Series in Built Environment, 3, 479–487.
Rahman, J., Fakhruddin, S. H. M., Rahman, A. K. M. F., et al. Environmental Heat Stress Among Young Working Women: A Pilot Study. Annals of Global Health. 2017; 82:760.
Rouhanizadeh, B., and Kermanshachi, S. (2020). Post-disaster reconstruction of transportation infrastructures: Lessons learned. Sustainable Cities and Society, 63, p.102505.
Safapour, E., Kermanshachi, S., and Ramaji, I. (2018). “Entity-based investigation of project complexity impact on size and frequency of construction phase change orders”, Proceedings of Construction Research Congress, pp. 2–4, April. https://doi.org/10.1061/9780784481271.066.
Safapour, E., Kermanshachi, S., Kamalirad, S., and Tran, D. (2019). Identifying effective project-based communication indicators within primary and secondary stakeholders in construction projects. Journal of Legal Affairs and Dispute Resolution. Eng. Constr. 11 (4), DOI: https://doi.org/10.1061/(asce)la.1943-4170.0000332.
Safapour, E., and Kermanshachi, S. (2020). Identification and categorization of factors affecting duration of post-disaster reconstruction of interdependent transportation systems. In Construction Research Congress 2020: Computer Applications (pp. 1290–1299). Reston, VA: American Society of Civil Engineers.
Schulte, P. A., and Chun, H. Climate Change and Occupational Safety and Health: Establishing a Preliminary Framework. Journal of Occupational and Environmental Hygiene. 2009; 6:542–554.
Song, S., and Zhang, F. A Study on Assessing the Awareness of Heat-Related Illnesses in the Construction Industry. In Construction Research Congress 2022 (pp. 431–440).
Sultana, N., Ferdousi, J., and Shahidullah, M. 2015. “Health Problems among Women Building Construction Workers.” Journal of Bangladesh Society of Physiologist, 9 (1). https://doi.org/10.3329/jbsp.v9i1.22793.
Tummalapudi, M., Harper, C. M., and Killingsworth, J. (2020). Construction Surety Bonding Criteria: The US Perspective. EPiC Series in Built Environment, 1, 338–346.
Tseng, M.-F., Chou, C. L., Chung, C.-H., Chen, Y.-K., Chien, W.-C., Feng, C.-H., and Chu, P. (2020). “Risk of chronic kidney disease in patients with heat injury: A nationwide longitudinal cohort study in Taiwan.” PLOS ONE, 15(7): e0235607. https://doi.org/10.1371/journal.pone.0235607.
Wong, C. H. (2004). Contractor performance prediction model for the United Kingdom construction contractor: study of logistic regression approach. Journal of construction engineering and management, 130(5), 691–698.
Wong, D. P., Chung, J. W., Chan, A. P., et al. Comparing the physiological and perceptual responses of construction workers (bar benders and bar fixers) in a hot environment. Applied Ergonomics. 2014; 45:1705–1711.
Xiang, J., Bi, P., Pisaniello, D., and Hansen, A. (2014). “Health impacts of workplace heat exposure: an epidemiological review.” Industrial health, 52(2), 91–101.
Xiang, J. J., Hansen, A., Pisaniello, D., and Bi, P. Workers’ perceptions of climate change related extreme heat exposure in South Australia: a cross-sectional survey. BMC Public Health, 16 (1) (2016), p. 549.
Zahoor, H., Chan, A. P. C., Masood, R., et al. Occupational safety and health performance in the Pakistani construction industry: stakeholders’ perspective. International Journal of Construction Management. 2016; 16:209–219.
Zhang, M., Murphy, L. A., Fang, D., and Caban-Martinez, A. J. (2015). Influence of fatigue on construction workers’ physical and cognitive function. Occupational Medicine, 65(3), 245–250.

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Tran-SET 2022
Pages: 259 - 269

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Published online: Dec 13, 2022

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Sanjgna Karthick [email protected]
1Ph.D. Student, Dept. of Civil Engineering, Univ. of Texas at Arlington, Arlington, TX. Email: [email protected]
Sharareh Kermanshachi, Ph.D., M.ASCE [email protected]
P.E.
2Associate Professor, Dept. of Civil Engineering, Univ. of Texas at Arlington, Arlington, TX. Email: [email protected]
Karthikeyan Loganathan, Ph.D. [email protected]
3Assistant Professor of Instruction, Dept. of Civil Engineering, Univ. of Texas at Arlington, Arlington, TX. Email: [email protected]

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