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Quantification of human error probability towards the gas inerting process on-board crude oil tankers

机译:量化对原油轮载气惰化过程的人为错误概率

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This paper presents an approach to quantify human error probability in the gas inerting operation of crude oil tankers since it is one of the most critical processes on-board ships. The maritime regulatory bodies require the application of the use of inert gas on newly built tankers, and most existing tankers over 20,000 dwt, since the gas inerting operation prevents fire and chemical reaction inside the cargo tanks. Despite its operational benefits, it may cause oxygen deficiency inside the tanks and damage human health as well as the marine environment. Therefore, it is quite significant for marine safety practitioners to predict human error probability (HEP) during the gas inerting operation. Unlike conventional HEP assessment methods, this paper contains a quantitative approach to systematically predict human error for designated tasks and ascertain the desired safety control level in crude oil tanker ships. To achieve this goal, a quantification of human error probability approach is proposed. In view of the findings, human error reduction measures are recommended. As a result, the paper is expected to contribute to the improvement of maritime safety, protection of the environment, and the reduction of loss of life on-board crude oil tankers. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种量化原油船气体惰化操作中人为错误概率的方法,因为它是船上最关键的过程之一。海上监管机构要求在新建的油轮和超过20,000载重吨的大多数现有油轮上使用惰性气体,因为气体惰性化操作可防止货油舱内发生火灾和化学反应。尽管有操作上的好处,但它仍可能导致储罐内氧气不足,并损害人体健康和海洋环境。因此,对于海上安全从业人员而言,预测气体惰化操作期间的人为错误概率(HEP)十分重要。与传统的HEP评估方法不同,本文包含一种定量方法,可以系统地预测指定任务的人为错误,并确定原油轮船的期望安全控制水平。为了实现这一目标,提出了人为错误概率方法的量化方法。有鉴于此,建议采取减少人为错误的措施。结果,该论文有望为改善海上安全,保护环境和减少原油轮船的生命损失做出贡献。 (C)2015 Elsevier Ltd.保留所有权利。

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