增强管道系统弹性:以可靠性为中心的方法

IF 4.9 Q2 ENERGY & FUELS
Federica Antonelli , Ming Yang , Valerio Cozzani
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引用次数: 0

摘要

管道是应用最广泛的输送液体和气体能源材料的系统,但在其整个使用寿命中,它们暴露于各种有害因素,如腐蚀和工艺变量偏差。近年来,弹性概念作为分析失效状态下基础设施行为的一种手段受到了广泛关注。本研究引入了一种基于可靠性评估管道弹性的新指标。所提出的方法包括对管道进行老化研究,考虑到潜在故障(如腐蚀、压力变化、温度波动和流体速度变化)的相互作用,并随后分析将系统恢复到原始状态的方法。该方法为构成弹性曲线的三个阶段:吸收、适应和恢复提供了一种评估方法。这种方法不仅确定了系统的故障时间,而且通过对恢复曲线的分析,便于对潜在的预防、缓解和修复行动的效果进行比较。最后通过实例验证了该方法的有效性。结果表明,该方法可以成为资产完整性管理(AIM)框架下决策过程中的一个有价值的工具,旨在通过实施最有效的安全解决方案来优化管道弹性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing pipeline system resilience: a reliability-centric approach
Pipelines are the most widely used system for transporting liquid and gaseous energy materials, but throughout their lifespan, they are exposed to various detrimental factors, such as corrosion and deviations in process variables. In recent years, the concept of resilience has gained significant attention as a means to analyze infrastructure behavior during failure states. This study introduces a novel metric for assessing pipeline resilience based on reliability. The proposed method involves an aging study of pipelines, considering the interaction of potential failures—such as corrosion, pressure variations, temperature fluctuations, and changes in fluid velocity—and subsequently analyzes ways to restore the system to its original conditions. The method offers an assessment approach for the three phases that constitute a resilience curve: absorption, adaptation, and restoration. This approach not only identifies the system’s time to failure, but also through analysis of the resilience curve, facilitates the comparison of the effects of potential preventive, mitigative, and repair actions. A case study is presented to validate the method’s efficacy. The results suggest that the proposed approach could be a valuable tool in the decision-making process within the asset integrity management (AIM) framework, aiming to optimize pipeline resilience by implementing the most effective safety solutions.
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来源期刊
CiteScore
7.50
自引率
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