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Development of a human reliability assessment technique for the maintenance procedures of marine and offshore operations

机译:开发海洋和离岸行动维护程序的人力可靠性评估技术

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Continuous monitoring and maintenance of assets is important for safe and reliable marine and offshore operations. On-board maintenance activities carried out by seafarers/operators are often prone to error, leading to an accident. Marine environmental and operational conditions significantly affect human performance and influence seafarers/operators to make un-intentional errors. International Maritime Organization (IMO) guidance recommends implementing Human Error Assessment and Reduction Technique (HEART) for assessing the effect of human error probability considering quantitative risk analysis of shipping and offshore operations. The conventional HEART is not specifically developed to apply to marine and offshore operations and therefore it is necessary to develop an operational specific methodology capturing unique features of marine environment and operations. In this study, by revising and modifying the HEART to assess and quantify the potential human errors in different marine environmental and operational conditions, a new methodology is developed. As a part of the developed methodology, the Error Producing Condition (EPC) and Error Influencing Factor (EIF) tables are refined and developed to reflect the particular conditions of marine environments for Human Error Probability (HEP) estimation. The EIF tables for both engine and deck departments are developed separately considering the answers to a questionnaire survey among experienced seafarers from around the world. As the case studies the developed methodology is applied to the maintenance procedures of a marine engine exhaust turbocharger and also a condensate pump on an offshore oil and gas facilities. Application of the developed methodology confirms that extreme weather, extreme workplace temperature, high ship motion, high level of noise and vibration, and work overload and stress increase the likelihood of human error as well as potential accidents. It is intended that application of this developed methodology in human factor risk assessment will assist in improving the safety and reliability of the current maintenance practices in marine and offshore operations.
机译:持续监控和维护资产对于安全可靠的海洋和海上业务至关重要。海员/运营商进行的载于船上的维护活动通常容易出错,导致事故。海洋环境和运营条件大大影响人类绩效,影响海员/运营商,以造成毫无意义的错误。国际海运组织(IMO)指导建议实施人为错误评估和减少技术(心脏),以评估考虑运输和海上业务的定量风险分析的人为误差概率的影响。传统的心脏没有专门开发,以适用于海洋和海上业务,因此有必要开发捕获海洋环境和操作的独特特征的操作特定方法。在本研究中,通过修改和修改心脏来评估和量化不同海洋环境和运营条件的潜在人类错误,开发了一种新的方法。作为开发方法的一部分,改进了产生条件(EPC)和误差影响因子(EIF)表,以反映人为误差概率(HEP)估计的海洋环境的特定条件。发动机和甲板部门的EIF表将单独开发,考虑来自世界各地的经验丰富的海员调查的问卷调查。如案例研究所开发的方法应用于海洋发动机排气涡轮增压器的维护程序,以及海上石油和天然气设施的冷凝水泵。开发方法的应用证实,极端天气,极端工作场所温度,高船舶运动,高水平的噪音和振动,工作过载和压力增加了人为错误的可能性以及潜在的事故。旨在在人类因子风险评估中应用这种发达的方法将有助于提高海洋和海上业务中当前维护实践的安全性和可靠性。

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