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On the use of hydrogen in confined spaces: Results from the internal project InsHyde

机译:关于密闭空间中氢气的使用:内部项目InsHyde的结果

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The paper presents an overview of the main achievements of the internal project InsHyde of the HySafe NoE. The scope of InsHyde was to investigate realistic small-medium indoor hydrogen leaks and provide recommendations for the safe use/storage of indoor hydrogen systems. Additionally, InsHyde served to integrate proposals from HySafe work packages and existing external research projects towards a common effort. Following a state of the art review, InsHyde activities expanded into experimental and simulation work. Dispersion experiments were performed using hydrogen and helium at the INERIS gallery facility to evaluate short and long term dispersion patterns in garage like settings. A new facility (GARAGE) was built at CEA and dispersion experiments were performed there using helium to evaluate hydrogen dispersion under highly controlled conditions. In parallel,combustion experiments were performed by FZK to evaluate the maximum amount of hydrogen that could be safely ignited indoors. The combustion experiments were extended later on by KI at their test site, by considering the ignition of larger amounts of hydrogen in obstructed environments outdoors. An evaluation of the performance of commercial hydrogen detectors as well as inter-lab calibration work was jointly performed by JRC, INERIS and BAM. Simulation work was as intensive as the experimental work with participation from most of the partners. It included pre-test simulations, validation of the available CFD codes against previously performed experiments with significant CFD code inter-comparisons, as well as CFD application to investigate specific realistic scenarios. Additionally an evaluation of permeation issues was performed by VOLVO, CEA, NCSRD and UU, by combining theoretical, computational and experimental approaches with the results being presented to key automotive regulations and standards groups. Finally, the InsHyde project concluded with a public document providing initial guidance on the use of hydrogen in confined spaces.
机译:本文概述了HySafe NoE内部项目InsHyde的主要成就。 InsHyde的范围是调查实际的中小型室内氢气泄漏,并为室内氢气系统的安全使用/存储提供建议。此外,InsHyde致力于将HySafe工作包和现有外部研究项目中的建议整合在一起,以共同努力。经过最新的审查,InsHyde的活动扩展到了实验和模拟工作。在INERIS画廊设施中使用氢气和氦气进行分散实验,以评估车库等环境中的短期和长期分散模式。在CEA建造了一个新设施(GARAGE),并在那里使用氦气进行了分散实验,以评估在高度受控条件下的氢分散性。同时,FZK进行了燃烧实验,以评估可在室内安全点燃的最大氢气量。后来,KI考虑到在室外受阻环境中点燃大量氢气,从而扩展了燃烧实验。 JRC,INERIS和BAM联合对商用氢气探测器的性能以及实验室间的校准工作进行了评估。在大多数合作伙伴的参与下,模拟工作与实验工作一样密集。它包括预测试模拟,针对之前进行的具有重大CFD代码比对的实验对可用CFD代码进行验证,以及CFD应用程序用于研究特定的实际场景。此外,VOLVO,CEA,NCSRD和UU通过结合理论,计算和实验方法对渗透问题进行了评估,并将结果提交给了主要的汽车法规和标准组织。最后,InsHyde项目以公开文件结束,该文件提供了在密闭空间中使用氢的初步指导。

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