首页> 外文期刊>High temperature: English translation of teplofizika vysokikh temperatur >Spectroscopic Investigation of Interaction between Propane Jets Injected into a Supersonic Flow of Air under Conditions of Development of a Nonequilibrium Discharge in One of the Jets
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Spectroscopic Investigation of Interaction between Propane Jets Injected into a Supersonic Flow of Air under Conditions of Development of a Nonequilibrium Discharge in One of the Jets

机译:在其中一个喷嘴产生非平衡放电的条件下,注入到超音速空气流中的丙烷喷嘴之间相互作用的光谱研究

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Emission spectroscopy is used to investigate the flow arising under conditions of injection of propane jets into a supersonic flow of air in the longitudinal direction; these jets are spaced apart in the initial zone of injection, and a nonequilibrium discharge is developed in one of the jets. Experiments are performed at Mach number M = 2, static pressure of 3.47 × 10{sup}4 Pa, and discharge current of 1 A. Data are obtained on the composition and space distribution of radiating products arising in the process of conversion of fuel-and-air mixture in the resultant combined flow. In particular, data are given on the distribution of intensity of radiation of C{sub}2, CN, and CH radicals, as well as of atomic hydrogen and oxygen. The investigation results enable one to give a positive answer to the previously uninvestigated question of the possibility of ignition of a fuel-and-air mixture in supersonic flow, which propagates outside of the zone of reactions, supported by the nonequilibrium discharge. It is found that the redistribution of fuel between the main flow in which no discharge is present and an auxiliary channel in which the discharge is generated may result in a higher efficiency of the processes occurring in the main flow. The employed methods make it possible to determine the geometry of arising flow in the presence of plasma-chemical reactions.
机译:发射光谱法用于研究在纵向方向上将丙烷射流注入超声速空气流的条件下产生的流动。这些喷嘴在注射的初始区域中间隔开,并且其中一个喷嘴中产生了非平衡放电。实验在马赫数M = 2时进行,静压为3.47×10 {sup} 4 Pa,放电电流为1A。获得了有关燃料转化过程中产生的辐射产物的组成和空间分布的数据。和空气混合后的合成流。特别地,给出了关于C {sub} 2,CN和CH自由基以及原子氢和氧的辐射强度分布的数据。研究结果使人们能够对以前未经调查的问题进行研究,该问题是在超音速流中燃料和空气混合物着火的可能性,它在非平衡放电的支持下传播到反应区域之外。已经发现,在不存在排出物的主流和其中产生排出物的辅助通道之间的燃料的重新分配可以导致在主流中发生的过程的更高效率。所采用的方法使得可以在存在等离子体化学反应的情况下确定上升流的几何形状。

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