期刊文献+

70MPa车载储氢气瓶快速充放氢疲劳试验系统研制 被引量:5

Development of fatigue test system of fast charge-discharge process for 70MPa compressed hydrogen cylinder on vehicle
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摘要 以实际氢气为介质,建立了一套车载储氢气瓶快速充放氢疲劳试验系统,最高工作压力为90 MPa,最大平均充气质量流量大于3 kg/min,实际充放氢过程和疲劳试验表明系统完全达到了设定指标,并验证了各种监测控制措施的有效性。 The domestic fatigue test system of fast charge-discharge process for hydrogen cylinder mounted on vehicle was set up. Taking hydrogen gas as work fluid, the maximum work pressure of the sys- tem is 90 MPa, and the maximum average filling flux is larger than 3 kg/min. The actual charge-discharge process and fatigue test show that the preset target has been achieved. The validity of various inspection and control measures also has been verified.
出处 《低温工程》 CAS CSCD 北大核心 2012年第3期31-35,共5页 Cryogenics
基金 国家高技术研究发展专项经费资助(2007AA05Z121)
关键词 高压储氢气瓶 快速充放 疲劳试验 compressed hydrogen cylinder fast charge and discharge fatigue test
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参考文献10

  • 1Jesse Schneider. Fueling specification for 70 MPa compressed hydro- gen vehicles[ R]. Release Version, 2007.
  • 2Jesse Schneider , Livio Gambone, et al. 70MPa gaseous hydrogen storage fueling testing [ C 1. World Hydrogen Technologies Conven- tion, Italy, 2007,105-111.
  • 3John A Eihusen. Application of plastic-lined composite pressure ves- sels for hydrogen storage[ R]. General Dynamics Armament and Tech- nical Products, Lincoln, Nebraska, USA, 2007.
  • 4刘昊,陶国良.气动汽车快速加气站加气过程研究[J].中国机械工程,2007,18(3):369-373. 被引量:11
  • 5安刚.车载储氢气瓶快速充气分析[J].导弹与航天运载技术,2009(3):50-55. 被引量:10
  • 6Wilson G B, McNeill G W. Noble gas recharge temperatures and the excess air component [ J ]. Applied Geochemistry, 1997, 12 ( 6 ) : 747- 762.
  • 7Dutton J C, Coverdill R E. Experiment to study the gaseous discharge and filling of vessels. International Journal of Engineering Education, 1997, 13(2) :123-134.
  • 8Kountz K, Liss W, Blazek C. Method and apparatus for dispensing compressed natural gas[ P]. US patent 5752552, May 19,1998.
  • 9Lunstrom. Real gas effects in the analysis of ultra high pressure gas storage systems[ R], US Naval Weapons Center, China Lake, NWC TP6252,1951.
  • 10Chen Jiachang. Hydrogen energy vision and technology roadmap report for China[ C]. In: IPHE ILC Meeting, Brazil, 2005.

二级参考文献8

  • 1张浩,刘昊,陈鹰,陶国良.压缩空气动力汽车加气站的设计[J].机床与液压,2004,32(10):27-28. 被引量:4
  • 2刘昊,陶国良.气动汽车快速加气站加气过程研究[J].中国机械工程,2007,18(3):369-373. 被引量:11
  • 3Wilson G B,McNeill G W.Noble gas recharge temperatures and the excess air component[J].Applied Geochemistry,1997,12(6):747-762.
  • 4Coverdill.Dutton.Experiment to study the gaseous discharge and filling of vessels[J].Int J Engng Ed,1997,12(2):123-134.
  • 5Kountz K,Liss W,Blazek C.Method and apparatus for dispensing compressed natural gas[R].US patent 5752552,1998-05.
  • 6吴沛宜,马元.变质量系统热力学及其应用[M].北京:高等教育出版社,2001.
  • 7Wilson G B,McNeill G W.Noble Gas Recharge Temperatures and the Excess Air Component[J].Applied Geochemistry,1997,12(6):747-762.
  • 8陈鹰,许宏,陶国良,王宣银,刘昊,贾光政.压缩空气动力汽车的研究与发展[J].机械工程学报,2002,38(11):7-11. 被引量:49

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