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首页> 外文期刊>Military operations research >Analysis of risk and the strengthening of the safety technical barriers: application of Skikda (Algeria) oil refining complex
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Analysis of risk and the strengthening of the safety technical barriers: application of Skikda (Algeria) oil refining complex

机译:风险分析和安全技术壁垒的加强:斯基克达(阿尔及利亚)炼油厂的应用

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Purpose - Algeria occupies an important place in all of the oil-producing countries. However, in recent years, industrial facilities have experienced a rapid increase in the number of major industrial accidents and calamities, where fires and explosions have caused impacts and severe effects on people, property and the environment. Therefore, this paper aims to analyze the risks involved and assess the performance of the technical barriers at the thermo-hydraulic level of facilities at the level of the refinery of Skikda. Design/methodology/approach - The most effective methods in this field of activity are the systematic analyses of deviations or failures. As working tools, hazard and operability (HAZOP) method and fault tree analysis (FTA) were used to identify the various possible risks that could lead to undesirable phenomena, with the Topping unit. Using this type of analysis, it is possible to understand what the most risky process steps are and, where appropriate, to propose appropriate corrective and preventive measures. HAZOP is dedicated to the analysis of the risks of thermo-hydraulic systems and to control drift parameters such as pressure, temperature and flow. Unfortunately, with its limitations to the detection of leaks, the authors completed the study by FTA, working with a predetermined set of process parameters associated with system operation (compression, temperature, flow, etc.). Each of these parameters are combined with a series of possible potential deviations (too much, little, inverse, etc). For each analyzed equipment, the relevant parameters are selected and combined with the relevant deviations. For each parameter of the deviant process, the causes and consequences are determined. Findings - The combination of these two methods has allowed to highlight the various possible risks that could lead to undesirable phenomena, to respond to industrial expectations or even to manage the operation process safely. Thus, it enabled the authors to detect the weaknesses of the process. This allowed the authors to reinforce the technical safety barriers of the functional links of the process and propose appropriate, corrective and preventive measures. Originality/value - The work intends to reflect the real situation in which companies face risks. The originality of the work is represented by the combination of two methods: HAZOP and the FTA. This association allowed the authors to identify areas of weakness to set priorities for action by the company, through organizational, technical and human solutions, while engaging in a process of continuous improvement.
机译:目的-阿尔及利亚在所有产油国中都占有重要地位。然而,近年来,工业设施经历了重大工业事故和灾难的数量迅速增加,其中火灾和爆炸已对人,财产和环境造成影响并造成严重影响。因此,本文旨在分析涉及的风险,并评估斯基克达炼油厂一级设施的热液级技术障碍的性能。设计/方法/方法-在此活动领域中最有效的方法是对偏差或失败进行系统分析。作为工作工具,使用Topping单元使用了危害和可操作性(HAZOP)方法以及故障树分析(FTA)来识别可能导致不良现象的各种可能的风险。使用这种类型的分析,可以了解最危险的过程步骤是什么,并在适当时提出适当的纠正和预防措施。 HAZOP致力于分析热工液压系统的风险,并控制压力,温度和流量等漂移参数。不幸的是,由于其对泄漏检测的局限性,作者通过FTA完成了这项研究,研究了与系统操作相关的一组预定过程参数(压缩,温度,流量等)。这些参数中的每一个都与一系列可能的电位偏差(太多,很少,倒数等)组合在一起。对于每个分析的设备,选择相关参数并将其与相关偏差组合。对于偏差过程的每个参数,确定原因和后果。调查结果-两种方法的结合使我们可以突出各种可能导致不良现象的风险,以响应工业期望,甚至安全地管理操作过程。因此,它使作者能够发现该过程的弱点。这使作者能够加强过程功能链接的技术安全壁垒,并提出适当的,纠正和预防措施。原创性/价值-该工作旨在反映公司面临风险的真实情况。作品的独创性由两种方法的组合来表示:HAZOP和FTA。这种联系使作者能够确定薄弱环节,从而通过组织,技术和人为解决方案为公司确定行动重点,同时参与不断改进的过程。

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