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Empirical correlations for the solubility of pressurant gases in cryogenic propellants

机译:压力气体在低温推进剂中的溶解度的经验相关性

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We have analyzed data published by others reporting the solubility of helium in liquid hydrogen, oxygen, and methane, and of nitrogen in liquid oxygen, to develop empirical correlations for the mole fraction of these pressurant gases in the liquid phase as a function of temperature and pressure. The data, compiled and provided by NIST, are from a variety of sources and covers a large range of liquid temperatures and pressures. The correlations were developed to yield accurate estimates of the mole fraction of the pressurant gas in the cryogenic liquid at temperature and pressures of interest to the propulsion community, yet the correlations developed are applicable over a much wider range. The mole fraction solubility of helium in all these liquids is less than 0.3% at the temperatures and pressures used in propulsion systems. When nitrogen is used as a pressurant for liquid oxygen, substantial contamination can result, though the diffusion into the liquid is slow.
机译:我们已经分析了其他人发表的数据,这些数据报告了氦气在液态氢,氧和甲烷中的溶解度,以及氮在液态氧中的溶解度,以得出这些增压气体在液相中的摩尔分数随温度和温度的函数的经验相关性。压力。由NIST汇编和提供的数据来自各种来源,涵盖了大范围的液体温度和压力。建立了相关性,以得出推进社区感兴趣的温度和压力下,低温液体中加压气体的摩尔分数的准确估计值,但所建立的相关性适用于更广泛的范围。在推进系统中使用的温度和压力下,氦在所有这些液体中的摩尔分数溶解度均小于0.3%。当使用氮气作为液态氧的加压剂时,尽管扩散到液体中的速度很慢,但仍可能导致严重的污染。

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