1,239
Views
0
CrossRef citations to date
0
Altmetric
Original Article

Mental wellbeing; Human reliability assessment of seafarers during the COVID-19 era

, ORCID Icon &
Article: 2184604 | Received 25 Oct 2022, Accepted 21 Feb 2023, Published online: 05 Mar 2023

References

  • Abbassi, R., Khan, F., Garaniya, V., Chai, S., Chin, C., & Hossain, K. A. (2015). An integrated method for human error probability assessment during the maintenance of offshore facilities. Process Safety and Environmental Protection, 94(C), 1–29. Retrieved July 20, 2022, from https://doi.org/10.1016/J.PSEP.2015.01.010
  • Ade, N., & Peres, S. C. (2022). A review of human reliability assessment methods for proposed application in quantitative risk analysis of offshore industries. International Journal of Industrial Ergonomics, 87, 103238. Retrieved July 2, 2022, from https://doi.org/10.1016/J.ERGON.2021.103238
  • Aicrane. (2022). Marine winch for sale - aicrane winch marine. Retrieved October 6, 2022, from https://winchmachines.com/marine-winch/
  • Athanasios, A. P., & Shamika, N. S. (2020) COVID-19 and maritime transport: Impact and responses.
  • Atiyah, A. A. (2018). Reliability analysis of marine pilots using advanced decision making methods. Retrieved May 8, 2022, from https://researchonline.ljmu.ac.uk/id/eprint/10034/1/2019atiyahphd.pdf
  • Baniela, S. I., & Ríos, J. V. (2011). Maritime safety standards and the seriousness of shipping accidents. The Journal of Navigation, 64(3), 495–520. Retrieved July 12, 2022, from https://doi.org/10.1017/S0373463311000099
  • Baygi, F., Mohammadian Khonsari, N., Agoushi, A., Hassani Gelsefid, S., Mahdavi Gorabi, A., & Qorbani, M. (2021). Prevalence and associated factors of psychosocial distress among seafarers during COVID-19 pandemic. BMC Psychiatry, 21(1), Retrieved July 21, 2022, from https://doi.org/10.1186/S12888-021-03197-Z
  • Bjorn, M. (2020) Depressed at sea a study into the mental health of seafarers.
  • Bowo, L. P., Mutmainnah, W., & Furusho, M. (2017). The development of marine accidents human reliability assessment approach: HEART methodology and MOP model. TransNav: International Journal on Marine Navigation and Safety of Sea Transportation, 11 (2), 63–68. Retrieved June 20, 2022, from https://doi.org/10.12716/1001.11.02.06
  • Calixto, E. (2016a). Human reliability analysis. Gas and Oil Reliability Engineering, 471–552. Retrieved June 25, 2022, from https://doi.org/10.1016/B978-0-12-805427-7.00005-1
  • Calixto, E. (2016b). Human reliability analysis. Gas and Oil Reliability Engineering, 471–552. Retrieved July 27, 2022, from https://doi.org/10.1016/B978-0-12-/805427-7.00005-1
  • Carotenuto, A., Fasanaro, A. M., Molino, I., Sibilio, F., Saturnino, A., Traini, E., & Amenta, F. (2013). The psychological general well-being index (PGWBI) for assessing stress of seafarers on board merchant ships. International Maritime Health, 64(4), 215–220. Retrieved July 10, 2022), from https://doi.org/10.5603/IMH.2013.0007
  • Carotenuto, A., Molino, I., Fasanaro, A. M., & Amenta, F. (2012). Psychological stress in seafarers: A review. International Maritime Health, 63(4), 188–194.
  • Casamirra, M., Castiglia, F., Giardina, M., & Tomarchio, E. (2009). Fuzzy modelling of HEART methodology: Application in safety analyses of accidental exposure in irradiation plants. Radiation Effects and Defects in Solids, 164(5–6), 291–296. Retrieved July 23, 2022, from https://doi.org/10.1080/10420150902805153
  • ClydePort. (2021). Clydeport mooring guidelines. Retrieved July 20, 2022, from https://www.peelports.com/media/onmgbppb/clydeport-mooring-guidelines-jun-21.pdf
  • Deacon, T., Amyotte, P. R., Khan, F. I., & MacKinnon, S. (2013). A framework for human error analysis of offshore evacuations. Safety Science, 51(1), 319–327. Retrieved July 20, 2022, from https://doi.org/10.1016/J.SSCI.2012.07.005
  • DiMattia, D. G., Khan, F. I., & Amyotte, P. R. (2005). Determination of human error probabilities for offshore platform musters. Journal of Loss Prevention in the Process Industries, 18(4–6), 488–501. Retrieved June 27, 2022, from https://doi.org/10.1016/J.JLP.2005.07.021
  • Doumbia-Henry, C. (2020). Shipping and COVID-19: Protecting seafarers as frontline workers. WMU Journal of Maritime Affairs, 19(3), 279–293. Retrieved July 2, 2022, from https://doi.org/10.1007/S13437-020-00217-9
  • Doumbia-Henry, C., & Se, P. (2020). Shipping and COVID-19: Protecting seafarers as frontline workers. WMU Journal of Maritime Affairs, 19(3), 279–293. Retrieved July 13, 2022, from https://doi.org/10.1007/s13437-020-00217-9
  • Drori, G. (2015). Underlying causes of mooring lines failures across the industry. Retrieved July 11, 2022, from https://mcedd.com/wp-content/uploads/2014/04/00_Guy-Drori-BP.pdf
  • Ettman, C. K., Abdalla, S. M., Cohen, G. H., Sampson, L., Vivier, P. M., & Galea, S. (2020). Prevalence of depression symptoms in US adults before and during the COVID-19 pandemic. JAMA Network Open, 3(9), e2019686. Retrieved June 24, 2022, from https://doi.org/10.1001/JAMANETWORKOPEN.2020.19686
  • European Maritime Safety Agency. (2022). Newsroom - COVID-19: Impact on the maritime sector in the EU - EMSA - European maritime safety agency. Retrieved October 6, 2022, from https://www.emsa.europa.eu/COVID19
  • Ferjencik, M. (2011). An integrated approach to the analysis of incident causes. Safety Science, 49(6), 886–905. Retrieved July 10, 2022), from https://doi.org/10.1016/J.SSCI.2011.02.005
  • Gaspar, J. F., Teixeira, A. P., Santos, A. M. P., Soares, C. G., Golyshev, P., Kähler, N., et al. (2001). Human centred design of a mooring winch control station. framework. Proceedings of 3rd International Conference on Maritime Technology and Engineering, MARTECH 2016, 1, 647–654. Retrieved: 13 July 2022, from https://doi.org/10.1201/B21890-84
  • Gotlib, I., & Hammen, C. (2008). Handbook of depression (2nd ed.). Retrieved June 14, 2022, from https://www.google.co.uk/books/edition/Handbook_of_Depression_Second_Edition/e82_MG5EsHIC?hl=en&gbpv=1&dq=hammen+depression+second+edition+2008&pg=PR1&printsec=frontcover
  • Härmä, M., Partinen, M., Repo, R., Sorsa, M., & Siivonen, P. (2008). Effects of 6/6 and 4/8 watch systems on sleepiness among bridge officers. Chronobiology International, 25(2–3), 413–423. Retrieved June 22, 2022, from https://doi.org/10.1080/07420520802106769
  • Hasanspahić, N., Vujičić, S., Frančić, V., & Čampara, L. (2021). The role of the human factor in marine accidents. Journal of Marine Science and Engineering, 9(3), 1–16. Retrieved July 15, 2022, from https://doi.org/10.3390/jmse9030261
  • Hasibuan, C. F., Yudi Daeng, P., & Hasibuan, R. R. (2020). Human reliability assessment analysis with human error assessment and reduction technique (HEART) method on sterilizer station at XYZ company. IOP Conference Series: Materials Science and Engineering, 851(1), 012019. Retrieved July 17, 2022, from https://doi.org/10.1088/1757-899X/851/1/012019
  • Hollnagel, E. (2005). Human reliability assessment in context. Retrieved May 29, 2022, from https://www.koreascience.or.kr/article/JAKO200502637315489.pdf
  • IMO. (2001) Guidance on fatigue mitigation and management. Retrieved June 14, 2022, from https://wwwcdn.imo.org/localresources/en/OurWork/HumanElement/Documents/1014.pdf
  • IMO. (2002) Annex guidelines for formal safety assessment (FSA) for use in the imo rule-making process. IMO, I., 2002. Guidelines for Formal Safety Assessment (FSA) for use in the IMO rule-making process. MSC/Circ. 1023; MEPC/Circ. 392, Ref T1/3.02, T5/1.01. (Retrieved June 21 2022).
  • International Maritime Organization. (2021). Supporting seafarers on the frontline of COVID-19. Retrieved March 30, 2022, from https://www.imo.org/en/MediaCentre/HotTopics/Pages/Support-for-seafarers-during-COVID-19.aspx
  • Islam, R., Abbassi, R., Garaniya, V., & Khan, F. I. (2016). Determination of human error probabilities for the maintenance operations of marine engines. Journal of Ship Production and Design, 32(04), 226–234. Retrieved March 20, 2022), from https://doi.org/10.5957/JSPD.2016.32.4.226
  • Islam, R., Abbassi, R., Garaniya, V., & Khan, F. (2017). Development of a human reliability assessment technique for the maintenance procedures of marine and offshore operations. Journal of Loss Prevention in the Process Industries, 50, 416–428. Retrieved July 16, 2022, from https://doi.org/10.1016/J.JLP.2017.10.015
  • Jensen, R. B. (2021). Fragmented digital connectivity and security at sea. Marine Policy, 130, 104289. Retrieved July 1, 2022, from https://doi.org/10.1016/J.MARPOL.2020.104289
  • Johansson, B. J., & Lindgren, M. (2008). A quick and dirty evaluation of resilience enhancing properties in safety critical systems. Retrieved June 5, 2022, from https://www.resilience-engineering-association.org/download/resources/symposium/symposium-2006/Johansson_Lindgren_text.pdf
  • Jonglertmontree, W., Kaewboonchoo, O., Morioka, I., & Boonyamalik, P. (2022). Mental health problems and their related factors among seafarers: A scoping review. BMC Public Health, 22(1), Retrieved June 20, 2022, from https://doi.org/10.1186/s12889-022-12713-z
  • Julie, B., & Justin, H. (2009) ‘Review of human reliability assessment methods RR679 research report’.
  • Kerkamm, F., Dengler, D., Eichler, M., Materzok-Köppen, D., Belz, L., Neumann, F. A., Zyriax, B. C., Harth, V., & Oldenburg, M. (2022a). Measurement methods of fatigue, sleepiness, and sleep behaviour aboard ships: A systematic review. International Journal of Environmental Research and Public Health, 19(1), 120. Retrieved July 7, 2022, from https://doi.org/10.3390/ijerph19010120
  • Kerkamm, F., Dengler, D., Eichler, M., Materzok-Köppen, D., Belz, L., Neumann, F. A., Zyriax, B. C., Harth, V., & Oldenburg, M. (2022b). Measurement methods of fatigue, sleepiness, and sleep behaviour aboard ships: A systematic review. International Journal of Environmental Research and Public Health, 19(1), 120. Retrieved July 10, 2022), from https://doi.org/10.3390/ijerph/19010120
  • Kirwan, B. (1996). The validation of three human reliability quantification techniques THERP, HEART and JHEDI: part 1 - technique descriptions and validation issues. Applied Ergonomics, 27 (6), 359–373. Retrieved July 28, 2022, from https://doi.org/10.1016/S0003-6870(96)00044-0
  • Kirwan, B., & Gibson, H. (2007) ‘CARA: A human reliability assessment tool for air traffic safety management - technical basis and preliminary architecture’, The Safety of Systems - Proceedings of the 15th Safety-Critical Systems Symposium, SSS 2007, pp. 197–214. https://doi.org/10.1007/978-1-84628-806-7_13 (Retrieved July 21, 2022).
  • Kletz, T. A. (2001). An engineer’s view of human error. Taylor & Francis.
  • Lefkowitz, R. Y. et al. (2019). Seafarer mental health study. Retrieved June 15, 2022, from www.seafarerstrust.org
  • Leveson, N. (2001). Evaluating accident models using recent aerospace accidents part 1: Event-based models. Retrieved June 4, 2022, from https://dspace.mit.edu/bitstream/handle/1721.1/102726/ESD-WP-2002-06.pdf?sequence=1&isAllowed=y
  • LXiong, J., Lipsitz, O., Nasri, F., Lui, L. M., Gill, H., Phan, L., & McIntyre, R. S. (2020). Impact of COVID-19 pandemic on mental health in the general population: A systematic review. Journal of Affective Disorders, 277, 55–64. Retrieved July 12, 2022, from https://doi.org/10.1016/j.jad.2020.08.001
  • Maclachlan, M., Kavanagh, B., & Kay, A. (2012). Maritime health: A review with suggestions for research. International Maritime Health, 63(1), 1–6. Retrieved July 15, 2022, from www.intmarhealth.plwww.intmarhealth.pl
  • Makara-Studzińska, M., Załuski, M., Jagielski, P., Wójcik-Małek, D., & Szelepajło, M. (2021). An exploration of perceived stress, burnout syndrome, and self-efficacy in a group of polish air traffic controllers and maritime navigators: Similarities and differences. International Journal of Environmental Research and Public Health, 18(1), 1–16. Retrieved July 17, 2022, from https://doi.org/10.3390/ijerph18010053
  • Mansyur, M., Sagitasari, R., Wangge, G., Sulistomo, A. B., & Kekalih, A. (2021). Long working hours, poor sleep quality, and work-family conflict: Determinant factors of fatigue among Indonesian tugboat crewmembers. BMC Public Health, 21(1), Retrieved July 10, 2022), from https://doi.org/10.1186/s12889-021-11883-6
  • Manuele, F. A. (2012) Heinrich dislodging two myths from the practice of safety. Retrieved June 4, 2022, from https://www.proquest.com/docview/898436187/fulltextPDF/9D10DE47B778448EPQ/1?accountid=14116
  • Marine Accident Investigation Branch. (2019). Marine accident statistics. Retrieved July 20, 2022, from www.gov.uk/maib
  • Marine Accident Investigation Branch. (2020). MAIB annual report 2020. Retrieved July 20, 2022, from www.gov.uk/maib
  • Marine Accident Investigation Branch. (2021) Marine accident recommendations and statistics. Retrieved 20, July. 2022, from www.gov.uk/maib
  • Marine network. (2021). Mental wellness among seafarers: Get a social life on board- captain Roselyn kete – marine network news. Retrieved March 16, 2022, from https://www.marinenetworknews.com/2021/09/07/mental-wellness-among-seafarers-get-a-social-life-on-board-master-mariner/
  • Marsden, E. (2017). Heinrich’s domino model of accident causation — Risk Engineering. Retrieved June 4, 2022, from https://risk-engineering.org/concept/Heinrich-dominos#ref-Heinrich1931
  • Martín, S., Martín-Pintado, J., Blanco-Sánchez, C., Rivilla, V. M., Rodríguez-Franco, A., & Rico-Villas, F. (2019). Spectral line identification and modelling (SLIM) in the MAdrid data CUBe analysis (MADCUBA) package - Interactive software for data cube analysis. Astronomy & Astrophysics, 631, A159. Retrieved June 15, 2022, from https://doi.org/10.1051/0004-6361/201936144
  • McVeigh, J., MacLachlan, M., Stilz, R., Cox, H., Doyle, N., Fraser, A., & Dyer, M. (2017). Positive psychology and well-being at sea. Maritime psychology: Research in organizational & health behavior at sea, 19-47. Retrieved July 11, 2022, from https://doi.org/10.1007/978-3-319-45430-6_2
  • Millefiori, L. M., Braca, P., Zissis, D., Spiliopoulos, G., Marano, S., Willett, P. K., & Carniel, S. (2021). COVID-19 impact on global maritime mobility. Scientific Reports, 11(1), 1–16. Retrieved July 17, 2022, from https://doi.org/10.1038/s41598-021-97461-7
  • Noroozi, A., Abbassi, R., MacKinnon, S., Khan, F., & Khakzad, N. (2014). Effects of cold environments on human reliability assessment in offshore oil and gas facilities. Human Factors, 56(5), 825–839. Retrieved July 15, 2022, from https://doi.org/10.1177/0018720813512328
  • Noroozi, A., Khakzad, N., Khan, F., MacKinnon, S., & Abbassi, R. (2013). The role of human error in risk analysis: Application to pre- and post-maintenance procedures of process facilities. Reliability Engineering & System Safety, 119, 251–258. Retrieved July 11, 2022, from https://doi.org/10.1016/J.RESS.2013.06.038
  • Okaro, I. A., & Tao, L. (2016). Reliability analysis and optimisation of subsea compression system facing operational covariate stresses. Reliability Engineering & System Safety, 156, 159–174. Retrieved July 16, 2022, from https://doi.org/10.1016/J.RESS.2016.07.018
  • Okeleke, U. J., & Aponjolosun, M. O. (2020). A study on the effects of COVID–19 pandemic on Nigerian seafarers. Journal of Sustainable Development of Transport and Logistics, 5(2), 135–142. Retrieved July 19, 2022), from https://doi.org/10.14254/JSDTL.2020.5-2.12
  • Oldenburg, M., Hogan, B., & Jensen, H. -J. (2012). Systematic review of maritime field studies about stress and strain in seafaring. International Archives of Occupational and Environmental Health, 86(1), 1–15. Retrieved July 15, 2022, from https://doi.org/10.1007/s00420-012-0801-5
  • Pauksztat, B., Grech, M. R., & Kitada, M. (2022). The impact of the COVID-19 pandemic on seafarers’ mental health and chronic fatigue: Beneficial effects of onboard peer support, external support and Internet access. Marine Policy, 137, 104942. Retrieved July 25, 2022, from https://doi.org/10.1016/J.MARPOL.2021.104942
  • Qin, W., Li, L., Zhu, D., Ju, C., Bi, P., & Li, S. (2021). Prevalence and risk factors of depression symptoms among Chinese seafarers during the COVID-19 pandemic: A cross-sectional study. BMJ Open, 11(6), e048660. Retrieved July 5, 2022, from https://doi.org/10.1136/BMJOPEN-2021-048660
  • Qureshi, Z. (2007). A review of accident modelling approaches for complex socio-technical systems. Australian Computer Society. In The 12th Australian Workshop on Safety Related Programmable Systems (SCS’07), Adelaide. Conf. Res. Pract. Inf. Technol (Vol. 86, pp. 1-14). Retrieved July 18, 2022, from https://doi.org/10.5555/1387040.1387046
  • Rathnayaka, S., Khan, F., & Amyotte, P. (2011). SHIPP methodology: Predictive accident modeling approach. Part II. Validation with case study. Process Safety and Environmental Protection, 89(2), 75–88. Retrieved July 1, 2022, from https://doi.org/10.1016/J.PSEP.2010.12.002
  • Rausand, M., & Hoyland, A. (2004) System reliability theory models, statistical methods, and applications. 2nd Ed, John Wiley & Sons, . , . References - Scientific Research Publishing. https://www.scirp.org/(S(lz5mqp453edsnp55rrgjct55))/reference/ReferencesPapers.aspx?ReferenceID=1821349 (Retrieved July 11, 2022).
  • Reason, J. (2000). Human error: Models and management. British Medical Journal, 320 (7237), 768–770. Retrieved July 6, 2022, from https://doi.org/10.1136/BMJ.320.7237.768
  • Salyga, J., & Kušleikaite, M. (2011). Factors influencing psychoemotional strain and fatigue, and relationship of these factors with health complaints at sea among Lithuanian seafarers. Medicina, 47 (12), 675–681. Retrieved July 14, 2022, from https://doi.org/10.3390/medicina47120099
  • Sampson, H., & Ellis, N. (2019) Seafarers’ mental health and wellbeing. (Retrieved March 13, 2022, from https://iosh.com/media/6306/seafarers-mental-health-wellbeing-full-report.pdf
  • Scott, M. (1997). PC analysis of key words - and key key words. System, 25 (2), 233–245. Retrieved July 12, 2022, from https://doi.org/10.1016/S0346-251X(97)00011-0
  • Seafarers Health Information Programme. (2020). A good mental health guide for seafarers steps to positive mental health. Retrieved June 15, 2022, from www.getselfhelp.co.uk
  • Slišković, A. (2020). Seafarers’ well-being in the context of the COVID-19 pandemic: A qualitative study. Work, 67 (4), 799–809. Retrieved July 13, 2022, from https://doi.org/10.3233/WOR-203333
  • Sliškovíc, A., & Penezíc, Z. (2017). Lifestyle factors in Croatian seafarers as relating to health and stress on board. Work, 56 (3), 371–380. Retrieved July 17, 2022, from https://doi.org/10.3233/WOR-172501
  • Smith, A., Allen, P., & Wadsworth, E. (2006) ‘Seafarer fatigue: The Cardiff research programme’. (Retrieved June 12, 2022, from https://orca.cardiff.ac.uk/id/eprint/48167/1/research_report_464.pdf
  • Stannard, S. (2020). COVID-19 in the maritime setting: The challenges, regulations and the international response. International Maritime Health, 71 (2), 85–90. Retrieved July 4, 2022, from https://doi.org/10.5603/IMH.2020.0016
  • Svedung, I., & Rasmussen, J. (2002). Graphic representation of accident scenarios: Mapping system structure and the causation of accidents. Safety Science, 40 (5), 397–417. Retrieved July 8, 2022, from https://doi.org/10.1016/S0925-7535(00)00036-9
  • Thomas, M., Sampson, H., & Zhao, M. (2003). Finding a balance: companies, seafarers and family life. Maritime Policy & Management. 30(1), 59–76, Retrieved Retrieved 19, 2022), from https://doi.org/10.1080/0308883032000051630
  • Tu, J., Lin, W., & Lin, Y. (2015). A Bayes-SLIM based methodology for human reliability analysis of lifting operations. International Journal of Industrial Ergonomics, 45, 48–54. Retrieved July 2, 2022, from https://doi.org/10.1016/J.ERGON.2014.11.004
  • Tulsky, J. A.(2005). Beyond advance directives: Importance of communication skills at the end of life. JAMA, 294(3), 359–365. Retrieved July 10, 2022), from https://doi.org/10.1001/JAMA.294.3.359
  • Underwood, P., & Waterson, P. (2013a). Accident analysis models and methods: Guidance for safety professionals Accident analysis models and methods: Guidance for safety professionals VoR (Version of Record) LICENCE CC BY-NC-ND 4.0 REPOSITORY RECORD. Retrieved July 15, 2022, from http://www.lboro.ac.uk/departments/lds/PUBLISHER
  • Underwood, P., & Waterson, P. (2013b). Systemic accident analysis: Examining the gap between research and practice. Accident Analysis & Prevention, 55, 154–164. Retrieved July 11, 2022, from https://doi.org/10.1016/J.AAP.2013.02.041
  • Ung, S. T. (2019). Evaluation of human error contribution to oil tanker collision using fault tree analysis and modified fuzzy bayesian network based CREAM. Ocean Engineering, 179, 159–172. Retrieved July 5, 2022, from https://doi.org/10.1016/J.OCEANENG.2019.03.031
  • United Nations. (2021). Review of maritime transport. Retrieved May 18, 2022, from https://unctad.org/system/files/official-document/rmt2021_en_0.pdf
  • U.S. Department of Energy. (2012). Accident and operational safety analysis volume I: Accident analysis techniques introduction-handbook application and scope. Retrieved June 4, 2022, from https://www.standards.doe.gov/standards-documents/1200/1208-bhdbk-2012-v1/@@images/file
  • Wadsworth, E. J., Allen, P. H., McNamara, R. L., & Smith, A. P. (2008). Fatigue and health in a seafaring population. Occupational Medicine, 58(3), 198–204. Retrieved July 8, 2022, from https://doi.org/10.1093/occmed/kqn008
  • Wang, H., He, Y., Shi, L., Wang, J., Miao, L., & Dai, J. (2020). Willingness to engage in and current status of social participation among Chinese merchant sailors. Plos One, 15(11): e0242888.Y . Retrieved July 6, 2022, from https://doi.org/10.1371/journal.pone.0242888
  • Williams, J. C. (1988) ‘Data-based method for assessing and reducing human error to improve operational performance’, IEEE Conference on Human Factors and Power Plants, pp. 436–450. https://doi.org/10.1109/HFPP.1988.27540 (Retrieved July 17, 2022).