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首页> 外文期刊>Journal of Pyrotechnics >Spectral Study of Metallic Molecular Bands in Hybrid Rocket Plumes
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Spectral Study of Metallic Molecular Bands in Hybrid Rocket Plumes

机译:混合火箭羽流中金属分子带的光谱研究

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摘要

A labscale hybrid rocket was used to study spectral bands produced by metal combustion.Bands in the ultraviolet-visible region(300- 750 nm)are of interest.The rubber-like fuel,hydroxyl-terminatedpolybutadiene(HTPB),was doped with a metallic salt for introduction into the plume during combustion.When introduced,the metals produce atomic line emissions as well as molecular bands due to excited forms of metallic molecules in combustion.The most likely molecular band emissions are from the excited states of metal oxides or metal hydroxides formed by these metals in the presence of the oxygen flow of the hybrid rocket.As the concentration of metallic dopants increases in the flame,the molecular band emissions also increase.The fashion by which they increase is observed here.The high concentrations observed for these metals result in intensity versus concentration curves that diverge from the expected linear progression for manganese,magnesium and strontium.The molecular band emissions observed for calcium,barium and copper in this study followed linear progression,as does the atomic line emission for barium.The line emissions for manganese,strontium and calcium lean toward the concentration axis.The curves are attributed to self-absorption or increased interactions among mixing species as metal concentration increases in the plume.This study indicates that molecular bands are useful for monitoring engine health and for plume diagnostics.
机译:实验室规模的混合火箭用于研究金属燃烧产生的光谱带。在紫外-可见光区域(300-750 nm)的波段受到关注;橡胶状燃料羟基封端的聚丁二烯(HTPB)掺杂有金属在燃烧过程中引入烟羽中的盐。引入时,由于燃烧中金属分子的激发形式,金属产生原子线发射以及分子带。最有可能的分子带发射来自金属氧化物或金属氢氧化物的激发态这些金属是在混合动力火箭的氧气流存在下形成的。随着火焰中金属掺杂剂浓度的增加,分子带的发射也增加。在此观察到它们增加的方式。金属导致强度与浓度的曲线与锰,镁和锶的预期线性变化背道而驰。在这项研究中,钙,钡和铜的排放量呈线性变化,钡的原子线排放也呈线性变化。锰,锶和钙的线排放量向浓度轴倾斜。该曲线归因于自吸收或相互作用增加随着羽流中金属浓度的增加,混合物种。这项研究表明分子带对于监测发动机的健康状况和羽流诊断很有用。

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