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Gas sampling measurements of effluent from a singlet oxygen generator

机译:单线态氧气发生器废气的气体采样测量

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Abstract: A gas-sampling diagnostic has been developed to determine the molecular composition in real time of the gaseous flow emanating from a $+1$/$Delta$-g$/ oxygen generator. This excited state oxygen is the energy source for a chemical oxygen-iodine laser (COIL). The major constituents in the flow, helium, oxygen, chlorine and water are drawn from the generator and transported to a quadrupole mass spectrometer for analysis. Information derived from this instrument such as chlorine utilization, water vapor content and flow impurities will advance our understanding of the oxygen generator performance. Precise measurements of water content are particularly important because of its energy quenching effect on I$+*$/, the lasing species in a COIL. This diagnostic may also be used to measure the mixing distribution of molecular iodine in the supersonic excited oxygen flow downstream of the nozzles. This paper discusses the criteria for the design of the gas-sampling diagnostic. !0
机译:摘要:已开发出一种气体采样诊断程序,以实时确定从$ + 1 $ / $ Delta $ -g $ /氧气发生器发出的气流的分子组成。这种激发态氧是化学氧碘激光器(COIL)的能源。气流中的主要成分,氦气,氧气,氯气和水从发生器中抽出并输送到四极杆质谱仪中进行分析。从该仪器获得的信息,例如氯利用率,水蒸气含量和流动杂质等,将使我们对制氧机性能有所了解。水分的精确测量尤其重要,因为它对I $ + * $ /(一种COIL中的激射物质)具有能量猝灭作用。该诊断程序还可用于测量喷嘴下游的超声激发氧气流中分子碘的混合分布。本文讨论了用于气体采样诊断的设计标准。 !0

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