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Application of quantitative risk assessment for performance-based permitting of hydrogen fueling stations

机译:定量风险评估在加氢站基于性能的许可中的应用

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NFPA 2, Hydrogen Technologies Code, allows the use of risk-informed approaches to permitting hydrogen fueling installations, through the use of performance-based evaluations of specific hydrogen hazards. However, the hydrogen fueling industry in the United States has been reluctant to implement the performance-based option because the perception is that the required effort is cost prohibitive and there is no guarantee that the Authority Having Jurisdiction (AHJ) would accept the results. This report provides a methodology for implementing a performance-based design of an outdoor hydrogen refueling station that does not comply with specific prescriptive separation distances. Performance-based designs are a code-compliant alternative to meeting prescriptive requirements. Compliance is demonstrated by evaluating a compliant prescriptive-based refueling station design with a performance-based design approach using Quantitative Risk Assessment (QRA) methods and hydrogen risk tools. This template utilizes the Sandia-developed QRA tool, Hydrogen Risk Analysis Model (HyRAM), to calculate risk values when developing risk-equivalent designs. HyRAM combines reduced-order deterministic models that characterize hydrogen release and flame behavior with probabilistic risk models to quantify risk values. Each project is unique and this template is not intended to cover unique, site-specific characteristics. Instead, example content and a methodology are provided for a representative hydrogen refueling site which can be built upon for new hydrogen applications. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:NFPA 2(《氢技术规范》)通过对特定的氢危害进行基于性能的评估,允许使用风险知情的方法来允许加氢装置。但是,美国的氢燃料行业一直不愿执行基于绩效的方案,因为人们认为所需的努力成本高昂,并且不能保证司法管辖区(AHJ)会接受结果。该报告提供了一种用于实施不符合特定规定分隔距离的室外加氢站性能设计的方法。基于性能的设计是满足规范要求的符合代码的替代方案。通过使用定量风险评估(QRA)方法和氢气风险工具的基于性能的设计方法对基于规范的加油站设计进行评估来证明其合规性。该模板利用Sandia开发的QRA工具氢风险分析模型(HyRAM),在开发等效风险的设计时计算风险值。 HyRAM将表征氢气释放和火焰行为的降阶确定性模型与概率风险模型相结合,以量化风险值。每个项目都是唯一的,并且此模板并非旨在涵盖特定于站点的独特特征。取而代之的是,提供了示例性的内容和方法,用于可在新的氢气应用基础上建立的代表性氢气加油站。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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