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1)  local hydrogen risk
氢气分布
1.
But the local hydrogen risk exists because of the complicated structure of the com- partments and channels.
国际上已有研究机构采用一般的三维计算流体软件CFX进行安全壳内局部氢气分布研究,作为集总参数软件氢气风险分析的重要辅助手段,为安全壳内的消氢系统的设计、消氢设备的布置提供参考依据。
2)  Hydrogen concentration distribution
氢气浓度分布
1.
Hydrogen concentration distributions in the containment atmosphere and their potential deflagration risk are investigated,according to the hydrogen con-trol and risk analysis standard of US 10 CFR.
采用模块化严重事故计算工具,对秦山二期核电厂大破口失水事故(LB-LOCA)、小破口失水事故(LB-LOCA)和全厂断电(SBO)诱发的严重事故序列以及安全壳内的氢气浓度分布进行了计算分析。
3)  hydrogen distribution
氢分布
1.
The range of hydrogen content in DLC films is about 6at% to 17at%, and the hydrogen distribution is equalization along the depth of films.
用核反应分析方法,对等离子体基脉冲偏压沉积DLC膜的氢分布和氢含量进行了较系统的研究。
4)  hydrogen separation
氢气分离
1.
The present paper reviews in detail the latest development of the strategies to enhance the hydrophobic properties of microporous silica membranes and their potential application in hydrogen separation.
综述了提高微孔二氧化硅膜疏水性的方法以及微孔二氧化硅膜材料在氢气分离方面的应用。
5)  hydrogen partial pressure
氢气分压
1.
Effect of hydrogen partial pressure on terephthalic acid hydrogenation;
氢气分压对对苯二甲酸加氢反应的影响
2.
The influences of sputtering power and hydrogen partial pressure on the structure of Si∶H films prepared by RF sputtering on single crystal silicon substrate were studied by means of SEM and Raman spectra.
采用SEM和Raman谱对射频磁控溅射法制备的硅氢薄膜结构进行了研究,讨论了在100~400 W范围内溅射功率和氢气分压对硅氢薄膜结构的影响。
6)  Hydrogen analysis
氢气分析
补充资料:变压吸附分离氢气装置


变压吸附分离氢气装置


  濒 80.变压吸附分离氢气装置
  
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