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Development of a techno-economic framework for life extension decision making of safety critical installations

机译:为安全关键装置的寿命延长决策制定技术经济框架

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摘要

One of the major decisions in management of the industrial assets is to ensure the feasibility of life extension process for safety critical components when they reach end-of-life. Most of the existing life extension decision-making models are restricted solely to either "technical" or "economic" feasibility analyses that may lead to inaccurate results or incorrect conclusions. In this paper, a comprehensive life extension feasibility assessment framework by taking into account both the technical and economic considerations is developed. The proposed techno-economic model for life extension of safety critical elements consists of three phases: preparation, assessment, and implementation. The technical assessment part of the framework incorporates all aspects of data collection and review, screening and prioritization of safety critical elements, condition assessment, estimation of remaining useful life, and risk analysis, while the economic assessment part deals with cost-benefit analysis. The decision to qualify a safety critical element for continuous operation beyond its service life is made based on a "life extension measure (LEM)" which is calculated by combining two indexes of "equipment health condition" and "economic added-value" obtained respectively from the technical and economic assessments. The model is applied to support the life extension decision-making procedure for water deluge systems in offshore oil installations. The results of the study show that the model is highly capable of assisting asset owners to evaluate the technical and economic benefits of extending the service life of components. (C) 2016 Published by Elsevier Ltd.
机译:管理工业资产的主要决定之一是确保当安全关键组件达到使用寿命时延长寿命的可行性。现有的大多数延长寿命的决策模型仅限于可能导致结果不准确或结论不正确的“技术”或“经济”可行性分析。在本文中,通过考虑技术和经济因素,开发了一个综合的寿命延长可行性评估框架。为延长安全关键要素的寿命而提出的技术经济模型包括三个阶段:准备,评估和实施。框架的技术评估部分包括数据收集和审查,安全关键要素的筛选和优先级,状态评估,剩余使用寿命估计和风险分析的所有方面,而经济评估部分则处理成本效益分析。根据“使用寿命延长措施(LEM)”来决定是否使安全关键要素能够连续使用,以达到其使用寿命,该措施是通过分别获得“设备健康状况”和“经济增加值”两个指标来计算的从技术和经济评估。该模型用于支持海上石油设施中水淹系统的寿命延长决策程序。研究结果表明,该模型非常有能力协助资产所有者评估延长组件使用寿命的技术和经济利益。 (C)2016由Elsevier Ltd.出版

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