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液态气体
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  liquid gas
     THE EXPERIMENTAL TECHNOLOGY FOR SHOCK COMPRESSED LIQUID GAS
     液态气体冲击压缩实验技术
短句来源
     Because leakage rate measuring process in manufacturing techniques of liquid gas storing trough expends 2-4 months, manufacturing expenses of furs trough remains right. This doesn't benefit market competition.
     由于在液态气体贮存槽制造工艺中的漏率测定工序要用2~4个月时间,因此,使用此槽的制造费用居高不下,不利于市场竞争.
短句来源
  gas liquid
     Study on new manufacturing techniques of gas liquid storage tank
     液态气体贮存槽的新制造工艺研究
短句来源
  “液态气体”译为未确定词的双语例句
     The GY_(48K) Type Tank Car for Liquefied Gas with Low Temperature
     GY_(48K)型低温液态气体罐车
短句来源
     Described are the structure, performance, technical parameters and testing of the GY_(48K) type tank car for liquefied gas with low temperature.
     介绍了GY48K型低温液态气体罐车的结构、性能、技术参数及试验情况
短句来源
     Liquid gases have a lot of advantages,many gas separating industries manufacturing liquid products massively at present.
     液态气体贮存具有很多优势,在空气分离行业中广泛生产液态产品.
短句来源
     Such traditional gas storage and transportation technologies in phase of gas or liquid as Pipeline, LNG and CNG have the disadvantage of higher investment and more difficulty at large and so on problems, The expanding requirement of gas resource also asks for the new safe and economical gas storage and transportation technology. Study for the characteristic that natural gas and water can get crystalline clathrate under special conditions.
     针对天然气管线、LNG、CNG 等传统的气、液态气体储运方式普遍存在投资高、难度大等缺点,气体资源需求的扩大也迫切需要新型安全、经济的储运技术等问题,对天然气和水在一定条件下生成结晶状物质(NGH)的特点使得天然气以固态方式进行了研究。
短句来源
  相似匹配句对
     THE EXPERIMENTAL TECHNOLOGY FOR SHOCK COMPRESSED LIQUID GAS
     液态气体冲击压缩实验技术
短句来源
     Study on new manufacturing techniques of gas liquid storage tank
     液态气体贮存槽的新制造工艺研究
短句来源
     The Emissivity of Gas
     气体黑度
短句来源
     The Greenhouse Gases
     温室效应气体
短句来源
     The preparation of liquid hydrogen sulfide
     液态硫化氢的制备
短句来源
查询“液态气体”译词为用户自定义的双语例句

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  liquid gas
The stationary laminar boundary layer on a rotating infinite cylinder in a cross flow of an incompressible liquid (gas) is considered at relatively low rotation frequencies.
      
It is shown that in contrast to the flow of a pure liquid (gas), above a certain threshold particle mass density, this flow begins to become unstable to infinitesimal perturbations.
      
A new liquid/gas phase separator was designed and used for hydride generation of antimony in alkaline mode followed by ICP-AES determination.
      
Optimum control of porous body heating by a flow of incompressible liquid (gas)
      
The control is considered to be exercised by means of the temperature of the liquid (gas) flow on entry into the porous body.
      
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  gas liquid
Numerical simulation of three-dimensional gas/liquid two-phase flow in a proton exchange membrane fuel cell
      
A three-dimensional gas/liquid two-phase flow and heat transfer model is developed based on the multiphase mixture theory.
      
At the later stage, small subcritical bubbles disappear due to gas transfer to large supercritical bubbles; as a result, the number of bubbles in the virtually equilibrium (as to the dissolved gas) liquid decreases.
      
At the later stage, small subcritical bubbles disappear due to gas transfer to large supercritical bubbles; as a result, the number of bubbles in the virtually equilibrium (as to the dissolved gas) liquid decreases.
      
Study of gas (liquid) filtration with the resistance law expressed by the R-function
      
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The technology of shock compression of liquid gas is reported in this paper.The liquid sample,which is refrigerated by liquid nitrogen,were shocked from initial states at 0.807g/cm 3 and 0.808 g/cm 3 for CO and N 2,respectively,to pressure range of 10~57GPa using a two stage light gas gun.The shock velocity vs mass velocity for liquid nitrogen and liquid carbon monoxide were measured,and electrical conductivity for liquid nitrogen were measured too.The engineering problems about how to combine the cryogenic...

The technology of shock compression of liquid gas is reported in this paper.The liquid sample,which is refrigerated by liquid nitrogen,were shocked from initial states at 0.807g/cm 3 and 0.808 g/cm 3 for CO and N 2,respectively,to pressure range of 10~57GPa using a two stage light gas gun.The shock velocity vs mass velocity for liquid nitrogen and liquid carbon monoxide were measured,and electrical conductivity for liquid nitrogen were measured too.The engineering problems about how to combine the cryogenic system with the sample target,the inner target chamber and its outer,the cryogenic target and measuring detectors et al,are discussed.In addition,the problems of measuring and controlling of the temperature of cryogenic target,and how to determine the liquid is or not full filled in the sample cavity are also discussed.

利用液氮制冷技术实现低温靶及气体样品液化,并通过二级轻气炮加载进行液态气体0 ~60 G Pa 的冲击压缩实验。较详细地讨论了制冷系统与样品靶、靶室内外各环节之间可靠的低温真空连接等工程问题,样品靶的温度调节与控制,液态气体样品的灌注及液体量( 或液面) 的判断依据,样品压缩后的冲击波速度测量和电导率测量等技术问题。

Dynamic equation of state for liquids N 2 and CO were measured in the shock pressure range of 10~57GPa,using a two stage light gas gun.The liquids were shocked from initial states near their saturation curves at 77.6K that their densities are about 0.808g/cm 3 and 0.807g/cm 3 for N 2 and CO,respectively.The Hugoniot data of liquid N 2 and CO are obtained.These results show that nitrogen has been dissociated in shock pressure above 30GPa.And,the...

Dynamic equation of state for liquids N 2 and CO were measured in the shock pressure range of 10~57GPa,using a two stage light gas gun.The liquids were shocked from initial states near their saturation curves at 77.6K that their densities are about 0.808g/cm 3 and 0.807g/cm 3 for N 2 and CO,respectively.The Hugoniot data of liquid N 2 and CO are obtained.These results show that nitrogen has been dissociated in shock pressure above 30GPa.And,the carbon monoxide has a chemically non reactive compressive process in shock pressure below 20GPa,but it has a chemically reactive complicated process in up to pressure 20GPa.In addition,both liquids N 2 and CO have the similar shock compression characteristics be low pressure 20GPa.

介绍利用液氮致冷技术实现低温靶的冷却及样品气体的液化,并通过二级轻气炮对液态气体加载进行平面冲击压缩,实验分别测得10~57GPa一次冲击压缩下液氮和液态CO的Hugoniot关系数据。这些实验数据结果显示,33GPa以上比其以下更容易压缩,这种现象本质是氮发生离解相变消耗内能的一种表现形势。液态在20GPa以下表现为一种稳定的压缩过程,而在其以上则伴随有较为复杂的化学反应现象产生。此外,实验研究还发现,20GPa以下N2和CO两种分子液体的冲击压缩特性非常相似

Liquid gases have a lot of advantages,many gas separating industries manufacturing liquid products massively at present. Because leakage rate measuring process in manufacturing techniques of liquid gas storing trough expends 2-4 months, manufacturing expenses of furs trough remains right. This doesn't benefit market competition. Vacuum system designed meets the request completely, and found a new way for manufacturing liquid gas storage tank.

液态气体贮存具有很多优势,在空气分离行业中广泛生产液态产品.由于在液态气体贮存槽制造工艺中的漏率测定工序要用2~4个月时间,因此,使用此槽的制造费用居高不下,不利于市场竞争.为这一工序设计的抽真空系统,能够完全满足设计要求,为液态气体贮存槽的制造探索出了一条新路.

 
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