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Risk Analysis of a Fuel Storage Terminal Using HAZOP and FTA

机译:使用HAZOP和FTA的燃料存储终端的风险分析

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摘要

The size and complexity of industrial chemical plants, together with the nature of the products handled, means that an analysis and control of the risks involved is required. This paper presents a methodology for risk analysis in chemical and allied industries that is based on a combination of HAZard and OPerability analysis (HAZOP) and a quantitative analysis of the most relevant risks through the development of fault trees, fault tree analysis (FTA). Results from FTA allow prioritizing the preventive and corrective measures to minimize the probability of failure. An analysis of a case study is performed; it consists in the terminal for unloading chemical and petroleum products, and the fuel storage facilities of two companies, in the port of Valencia (Spain). HAZOP analysis shows that loading and unloading areas are the most sensitive areas of the plant and where the most significant danger is a fuel spill. FTA analysis indicates that the most likely event is a fuel spill in tank truck loading area. A sensitivity analysis from the FTA results show the importance of the human factor in all sequences of the possible accidents, so it should be mandatory to improve the training of the staff of the plants.
机译:工业化工厂的规模和复杂性,以及所处理产品的性质,意味着需要对所涉及的风险进行分析和控制。本文介绍了一种化学和相关行业的风险分析方法,该方法基于HAZard和可操作性分析(HAZOP)的结合,并通过开发故障树,故障树分析(FTA)对最相关的风险进行了定量分析。 FTA的结果可以确定预防和纠正措施的优先级,以最大程度地降低失败的可能性。进行案例分析。它包括位于瓦伦西亚(西班牙)港口的化学和石油产品卸货码头以及两家公司的燃料存储设施。 HAZOP分析显示,装卸区是工厂最敏感的区域,最重大的危险是燃油泄漏。 FTA分析表明,最有可能的事件是在加油车装载区发生燃油泄漏。 FTA结果的敏感性分析表明,人为因素在所有可能发生的事故序列中都很重要,因此应强制要求对工厂员工进行培训。

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