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Hydrogen permeation from CGH2 vehicles in garages: CFD dispersion calculations and experimental validation

机译:车库中CGH2车辆的氢气渗透:CFD扩散计算和实验验证

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摘要

The time and space evolution of the distribution of hydrogen in confined settings was investigated computationally and experimentally for permeation from typical compressed gaseous hydrogen (CGH2) storage systems for buses or cars. The main goal was to examine whether hydrogen is distributed homogeneously within a garage-like facility or whether stratified conditions are developed, under certain conditions. The nominal hydrogen flow rate considered was 1.087 L/min in a bus facility with a volume of 681 m~3. The release was assumed to be directed upwards from a 0.15 m diameter hole located at the middle part of the bus cylinders casing. Ventilation rates up to 0.03 air changes per hour (ACH) were considered. Simulated time periods extended up to 20 days. The CFD simulations performed with the ADREA-HF code showed that fully homogeneous conditions exist for low ventilation rates, while stratified conditions prevail for higher ventilation rates. Regarding flow structure it was found that the vertical concentration profiles can be considered as the superposition of the concentration at the floor (driven by diffusion) plus a concentration difference between floor and ceiling (driven by buoyancy forces). In all cases considered this concentration difference was found to be less than 0.5%. The dispersion experiments were performed in a large scale garage-like enclosure of 40 m~3 using helium (GARAGE facility). Comparison between CFD simulations and experiments showed that the predicted concentrations were in good agreement with the experimental data. Finally, simulations were performed using two integral models: the fully homogeneous model and a two-layer model and the results were compared both against CFD and the experimental data.
机译:在密闭环境中,氢的分布随时间和空间的变化已通过计算和实验研究了从公共汽车或汽车的典型压缩气态氢(CGH2)存储系统中渗透出来的情况。主要目的是检查氢在某些条件下是否均匀地分布在类似车库的设施中或是否形成了分层条件。在容量为681 m〜3的公共汽车设施中,考虑的标称氢气流速为1.087 L / min。假定释放是从位于总泵缸体中部的直径0.15 m的孔向上引导的。考虑的通风速率最高为每小时0.03换气量(ACH)。模拟的时间段长达20天。用ADREA-HF代码执行的CFD模拟表明,低通风率存在完全均匀的条件,而较高通风率则存在分层条件。关于流动结构,已经发现垂直浓度分布可以看作是地板上浓度的叠加(由扩散驱动)加上地板和天花板之间的浓度差(由浮力驱动)。在所有考虑的情况下,发现该浓度差均小于0.5%。使用氦气(GARAGE设备)在40 m〜3的大型车库状围墙中进行分散实验。 CFD模拟和实验之间的比较表明,预测的浓度与实验数据非常吻合。最后,使用两个积分模型进行了仿真:完全均质模型和两层模型,并将结果与​​CFD和实验数据进行了比较。

著录项

  • 来源
    《International journal of hydrogen energy》 |2010年第8期|3848-3856|共9页
  • 作者单位

    Environmental Research Laboratory, National Centre for Scientific Research Demokritos, 15310 Aghia Paraskevi, Attikis, Greece;

    rnEnvironmental Research Laboratory, National Centre for Scientific Research Demokritos, 15310 Aghia Paraskevi, Attikis, Greece;

    rnExperimental Fluids Mechanics Laboratory (DEN/DANS/DM2S/SFME/LEEF), Commissariat a l Energie Atomique (CEA), F-91191 Gif-sur-Yvette Cedex, France;

    rnVolvo Technology Corp., Dept. 06120 Chalmers Teknikpark, 412 88 Gothenburg, Sweden;

    rnHeat Transfer and Fluid Mechanics Laboratory, CEA, F-91191 Gif-sur-Yvette Cedex, France;

  • 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 safety; permeation; dispersion; ADREA-HF; GARAGE facility; ventilation;

    机译:氢安全渗透分散;ADREA-HF;车库设施;通风;
  • 入库时间 2022-08-18 00:29:20

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