Cost-Informed Risk-based Inspection (CIRBI) for Hydrogen Systems Components: A Novel Approach to Prevention Strategies

IF 11 1区 工程技术 Q1 ENGINEERING, INDUSTRIAL Reliability Engineering & System Safety Pub Date : 2025-03-25 DOI:10.1016/j.ress.2025.111063
Leonardo Giannini , Genserik Reniers , Ming Yang , Maria Nogal , Nicola Paltrinieri
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Abstract

The evolving energy landscape in Europe is showing concrete signals that hydrogen will play a central role in the energy transition scenario. In this light, a report of the European Hydrogen Backbone pinpoints no less than forty existing projects focused on the commissioning of several kilometers of hydrogen pipelines in the following years. Hence, ensuring a safe operability of these systems represents a topic worthy of investigation and marked by significant challenges, especially given the unique properties that make hydrogen a potentially hazardous substance. Established techniques may prove helpful in supporting the development of dedicated prevention and mitigation strategies for hydrogen systems. Among these, Risk-Based Inspection (RBI) could represent an effective tool to design inspection programs aimed at the detection of hydrogen-induced damages, especially for components working in pressurized environments, including pipeline materials. However, the lack of operational experience associated with emerging technologies may lead to the adoption of over-conservative safety measures, which could impact the economic attractiveness of these systems. Therefore, this study proposes an evolution of conventional RBI planning by implementing concepts of safety economics and optimization modelling, thus building a novel approach named “Cost-Informed Risk-Based Inspection” (CIRBI). The proposed methodology is therefore applied to a case study of inspection techniques potentially suitable for pipeline materials (i.e., API X-series pipeline steels), showcasing its potential as a self-standing approach for inspection planning while also demonstrating the insight that it may provide to ensure a safe operability of hydrogen pipelines.

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氢系统组件的成本知情风险检测(CIRBI):一种新的预防策略
欧洲不断发展的能源格局显示出具体的信号,表明氢将在能源转型中发挥核心作用。有鉴于此,欧洲氢能骨干组织(European Hydrogen Backbone)的一份报告指出,至少有40个现有项目将在未来几年内重点调试几公里长的氢管道。因此,确保这些系统的安全可操作性代表了一个值得研究的主题,并标志着重大挑战,特别是考虑到氢的独特性质,使其成为潜在的危险物质。已确立的技术可能有助于支持氢系统专门预防和缓解战略的发展。其中,基于风险的检测(RBI)是设计检测程序的有效工具,旨在检测氢气引起的损伤,特别是对于在压力环境下工作的部件,包括管道材料。然而,由于缺乏与新兴技术相关的操作经验,可能会导致采用过于保守的安全措施,从而影响这些系统的经济吸引力。因此,本研究提出了一种通过实施安全经济学和优化建模的概念来改进传统RBI规划的方法,从而建立了一种名为“基于成本的风险检查”(CIRBI)的新方法。因此,所提出的方法被应用于可能适用于管道材料(即API x系列管道钢)的检测技术的案例研究,展示了其作为检测计划的独立方法的潜力,同时也展示了它可能提供的洞察力,以确保氢气管道的安全可操作性。
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来源期刊
Reliability Engineering & System Safety
Reliability Engineering & System Safety 管理科学-工程:工业
CiteScore
15.20
自引率
39.50%
发文量
621
审稿时长
67 days
期刊介绍: Elsevier publishes Reliability Engineering & System Safety in association with the European Safety and Reliability Association and the Safety Engineering and Risk Analysis Division. The international journal is devoted to developing and applying methods to enhance the safety and reliability of complex technological systems, like nuclear power plants, chemical plants, hazardous waste facilities, space systems, offshore and maritime systems, transportation systems, constructed infrastructure, and manufacturing plants. The journal normally publishes only articles that involve the analysis of substantive problems related to the reliability of complex systems or present techniques and/or theoretical results that have a discernable relationship to the solution of such problems. An important aim is to balance academic material and practical applications.
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