Open Journal of Safety Science and Technology

Volume 6, Issue 1 (March 2016)

ISSN Print: 2162-5999   ISSN Online: 2162-6006

Google-based Impact Factor: 0.94  Citations  

Developing a Risk-Based Approach for Optimizing Human Reliability Assessment in an Offshore Operation

HTML  XML Download Download as PDF (Size: 472KB)  PP. 25-34  
DOI: 10.4236/ojsst.2016.61003    5,735 Downloads   6,492 Views  Citations

ABSTRACT

Human error plays a pivotal rule in all aspects of engineering activities such as operation, maintenance, design, inspection and installation. Industries are faced up to various significant human errors and consequently irrecoverable loss each year, but still there is a lack of heeds to qualify as well as quantify such errors. This paper tries to estimate the probability of failure in lifting of light structures in sea by considering human errors. To do this, a strong qualifying tool such as Functional Resonance Analysis Method (FRAM) is applied to develop high risk accident scenario by considering non-linear socio-technical interaction in system. Afterwards, human error probability is calculated for each activity using the Success Likelihood Index Method (SLIM) based on resonance that is carried out in FRAM network. Then Event Tree (ET) is conducted to assess consequences. The present study is aimed to interpret the importance of attentions to qualitative methods in implementing quantitative risk analyses to consider human error in calculation. The final outcome depicts that considering human error in the process of risk assessment will result in more accuracy and reliability in final Risk Probability Number (RPN). The developed methodology has been applied to a case study of an offshore installation.

Share and Cite:

BahooToroody, A. , Abaiee, M. , Gholamnia, R. , Torody, M. and Nejad, N. (2016) Developing a Risk-Based Approach for Optimizing Human Reliability Assessment in an Offshore Operation. Open Journal of Safety Science and Technology, 6, 25-34. doi: 10.4236/ojsst.2016.61003.

Cited by

[1] A review of human reliability assessment methods for proposed application in quantitative risk analysis of offshore industries
International Journal of Industrial Ergonomics, 2022
[2] A systematic literature review and future insights on maritime and offshore human reliability analysis
… , Part M: Journal of Engineering for …, 2022
[3] On reliability assessment of ship machinery system in different autonomy degree; A Bayesian-based approach
Ocean …, 2022
[4] Modeling the evolution of major storm-disaster-induced accidents in the offshore oil and gas industry
International journal of …, 2022
[5] Bayesian estimation for reliability engineering: Addressing the influence of prior choice
2021
[6] On hierarchical bayesian based predictive maintenance of autonomous natural gas regulating operations
2021
[7] Bayesian Regression Based Condition Monitoring Approach for Effective Reliability Prediction of Random Processes in Autonomous Energy Supply Operation
2020
[8] Functional Resonance Analysis Method (FRAM) Approach for Barrier Management in Offshore Drilling
2020
[9] Developing a risk-based maintenance model for a Natural Gas Regulating and Metering Station using Bayesian Network
2019
[10] A dynamic human reliability model for marine and offshore operations in harsh environments
2019
[11] A condition monitoring based signal filtering approach for dynamic time dependent safety assessment of natural gas distribution process
2019
[12] Resilience engineering for sustainable prevention in the manufacturing sector: A comparative study of two methods of risk analysis
2019
[13] On Reliability Challenges of Repairable Systems Using Hierarchical Bayesian Inference and Maximum Likelihood Estimation
2019
[14] Failure Estimation of Offshore Renewable Energy Devices Based on Hierarchical Bayesian Approach
2019
[15] Safety is an emergent property: Illustrating functional resonance in Air Traffic Management with formal verification
Safety Science, 2017
[16] Optimizing Operation Research Strategy for Design Intervention: A Framework for GOMS Selection Rule
Research into Design for Communities, Volume 1, 2017

Copyright © 2023 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.