首页> 外文会议>The International Conference Exhibition on Liquefied Natural Gas >ADVANCED RISK ASSESSMENT OF LNG STORAGE TANKS BASED ON RISK-BASED MAINTENANCE PLANNING EVALUATION AVANCEE DE RISQUES DE BACS DE STOCKAGE GNL AU MOYEN D'UN PLANNING DE MAINTENANCE BASEE SUR RISQUE
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ADVANCED RISK ASSESSMENT OF LNG STORAGE TANKS BASED ON RISK-BASED MAINTENANCE PLANNING EVALUATION AVANCEE DE RISQUES DE BACS DE STOCKAGE GNL AU MOYEN D'UN PLANNING DE MAINTENANCE BASEE SUR RISQUE

机译:基于风险的维护规划基于风险的维护计划的LNG储罐的先进风险评估,基于风险的维护计划的LNG存储风险的先进风险

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Risk Based Maintenance (RBM) is a new technique to provide optimum inspection or maintenance plans according to relative potential risk. In the present study, a new RBM technique for LNG storage tanks was developed. The technique is composed of a three stage-procedure in order to assess the risk in view of simplicity or strictness due to design information and operation histories of tanks. The first procedure could provide the tank risk itself briefly to compare the relative risk among plural tanks. The second is also a simplified method based on the severity of consequence particularly. After the higher risk tank on site is identified, each component or location consisted of the tank is assessed with a semi-quantitative method according to detail information by the third method. Therefore, the risk of each component could be compared. Based on the result, the maintenance procedure would be prioritized among assessed locations. In this study, these procedures were applied to RBM assessment on two LNG tanks made of 9%Ni steel and aluminum alloy respectively as the inner tank material. As results, it is found that weld joints in annular plate with shell plate or welded region on bottom plates hold the higher risk in the tanks. Furthermore, the risk after 10 or 20 years future could be assessed according to the prediction of aged conditions by this procedure.
机译:基于风险的维护(RBM)是一种新技术,可根据相对潜在风险提供最佳检测或维护计划。在本研究中,开发了一种用于LNG储罐的新RBM技术。该技术由三个阶段程序组成,以便鉴于设计信息和坦克的操作历史,以评估风险的简单性或严格。第一个程序可以简单地向坦克风险提供,以比较多个罐中的相对风险。第二种也是基于特别的严重性的简化方法。在识别出现场较高的风险箱之后,通过第三种方法根据详细信息,用半定量方法评估由罐组成的每个组件或位置。因此,可以比较每个组分的风险。基于该结果,维护程序将在评估位置进行优先级。在本研究中,将这些程序应用于2液滴罐的RBM评估,分别为9%Ni钢和铝合金作为内罐材料。结果,发现具有壳板或底板上的焊接区域的环形板中的焊接接头保持罐中的较高风险。此外,可以根据本程序根据老年条件的预测来评估10或20年后的风险。

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