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Quantitative risk assessment of a hydrogen refueling station by using a dynamic physical model based on multi-physics system-level modeling

机译:基于多物理系统级模型的动态物理模型,使用动态物理模型进行氢气加油站的定量风险评估

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摘要

Numerous accidents in HRSs have been reported worldwide in accident databases; therefore, many researchers have performed quantitative risk assessments (QRAs) of HRSs to enable risk-informed decision making in determining the safety distances or risk mitigation measures. The HRSs, located in urban areas such as Tokyo in Japan, are situated in congested areas with tall buildings and high population density; thus, they have relatively narrow station areas. However, the QRAs are generally suitable for large plants such as nuclear power plants or chemical plants; therefore, relatively small plants or installations, such as HRSs, have not yet been considered as QRA objects. Hence, it is necessary to conduct detailed QRAs with risk analyses and reduce the applied uncertainties for relatively small plants or installations. We applied a model-based approach of risk assessment to model the HRS process using multi-physics system-level modeling and simulated a target system using Modelica-an equation-based, object-oriented modeling language that allows acausal modeling of complex cyber-physical systems The primary aim of this study was to conduct a QRA of an HRS based on multi-physics system-level modeling. First, we modeled the HRS components and physical relationships between the components using basic physical equations. Then, we elucidate a QRA based on the constructed model. The difference in the leakage rates due to the leak positions and dynamic behavior of the model parameters were calculated using the constructed model. Finally, we estimated the individual risks of all the scenarios and compared the resulting risk contours based on the constructed model that includes the hydrogen-fuel dynamic behavior with those based on the traditional model. These results indicate that it is possible to assess whether the risks around the station boundary are acceptable based on the scenario information obtained by evaluating the risks near the station. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在事故数据库中遍布全球HRS中的众多事故;因此,许多研究人员对HRS进行了定量风险评估(QRAS),以便在确定安全距离或风险缓解措施方面实现风险明智的决策。位于日本东京等城市地区的HRSS位于拥挤的地区,拥有高层建筑和高人口密度;因此,它们具有相对较窄的站点。然而,QRA通常适用于诸如核电站或化工厂的大型工厂;因此,相对较小的植物或装置,例如HRSS,尚未被视为QRA对象。因此,有必要进行风险分析的详细QRA,并降低相对小的工厂或装置的应用不确定性。我们应用了一种模型的风险评估方法,使用多物理系统级建模和模拟使用ModelICA的目标系统模拟了基于等式的面向对象的建模语言来模拟HRS进程,允许复杂网络物理的ACAUSAL建模系统本研究的主要目的是根据多物理系统级模型进行HRS的QRA。首先,我们使用基本物理方程式建模HRS组件和部件之间的物理关系。然后,我们根据构建模型阐明QRA。使用构造模型计算由于泄漏位置和模型参数的动态行为引起的泄漏率的差异。最后,我们估计了所有场景的个体风险,并基于构造模型对所产生的风险轮廓进行比较,其包括基于传统模型的氢燃料动态行为。这些结果表明,可以基于通过评估站附近的风险而获得的场景信息来评估站边界周围的风险是否可接受。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2021年第78期|38923-38933|共11页
  • 作者单位

    Yokohama Natl Univ Grad Sch Environm & Informat Sci Hodogaya Ku 79e7 Tokiwadai Yokohama Kanagawa 2408501 Japan;

    Yokohama Natl Univ Grad Sch Environm & Informat Sci Hodogaya Ku 79e7 Tokiwadai Yokohama Kanagawa 2408501 Japan|Japan Aerosp Explorat Agcy 2-1-1 Sengen Tsukuba Ibaraki 3058505 Japan;

    Yokohama Natl Univ Inst Adv Sci Hodogayae Ku 79e5 Tokiwadai Yokohama Kanagawa 2408501 Japan;

    Yokohama Natl Univ Fac Environm & Informat Sci Hodogayae Ku 79e7 Tokiwadai Yokohama Kanagawa 2408501 Japan;

    Japan Petr Energy Ctr Minato Ku 2-11-1 Shibakoen Tokyo 1050011 Japan;

    Japan Petr Energy Ctr Minato Ku 2-11-1 Shibakoen Tokyo 1050011 Japan;

    Assoc Hydrogen Supply & Utilizat Technol Minato Ku 2-10-5 Akasaka Tokyo 1070052 Japan;

    Japan Petr Energy Ctr Minato Ku 2-11-1 Shibakoen Tokyo 1050011 Japan;

    Yokohama Natl Univ Fac Environm & Informat Sci Hodogayae Ku 79e7 Tokiwadai Yokohama Kanagawa 2408501 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen refueling station; Quantitative risk assessment; Dynamic physical model;

    机译:氢气加油站;定量风险评估;动态物理模型;

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