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Comparison Between Excited Hydroxyl Radical and Blue Radiation from Hydrogen Rocket Combustion

机译:氢火箭燃烧产生的羟自由基与蓝色辐射的比较

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This paper compares the two dominant types of radiation from hydrogen flames under rocket-combustion conditions: ultraviolet and blue radiation. The physical sources of both types are scrutinized and basic modeling strategies are presented. Data were collected from four different combustors with pressures ranging up to 80 bar. The ultraviolet and blue radiations are discussed with regard to their spectral content between 290 and 430 nm; (self-) absorption; and total, spatial, and dynamic radiance. Both types of radiation are found to be strongly dependent on the ground-state hydroxyl-radical concentration, and the regions of emissivity are similar. Pressure is shown to have a higher impact on the emissivity of the blue radiation. Radiation from the hydroxyl radical is strongly influenced by self-absorption, thereby limiting the transparency of the flame. Recommendations for the interpretation of both types of flame radiation are given.
机译:本文比较了火箭燃烧条件下氢火焰的两种主要辐射类型:紫外线和蓝色辐射。仔细检查了两种类型的物理源,并提出了基本的建模策略。从压力高达80 bar的四个不同燃烧器收集数据。讨论了紫外线和蓝色辐射在290至430 nm之间的光谱含量; (自我)吸收;以及总的,空间的和动态的辐射。发现这两种类型的辐射都强烈依赖于基态羟基自由基浓度,并且发射率区域相似。已显示压力对蓝色辐射的发射率具有更高的影响。羟自由基的辐射会受到自身吸收的强烈影响,从而限制了火焰的透明度。给出了解释两种火焰辐射的建议。

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