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Influence of equivalence ratio on plasma assisted detonation initiation by alternating current dielectric barrier discharge under rich burn condition

机译:富燃条件下当量比对交流电势垒放电等离子体辅助爆轰起爆的影响

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In order to study the effect of different equivalence ratios on plasma assisted detonation initiation under a rich burn condition, a loosely coupled method was adopted to simulate the detonation formation by alternating current dielectric barrier discharge in a hydrogen-oxygen gas mixture with different equivalence ratios. The spatial and temporal evolution of discharge products were analyzed first. Then, the species distribution, Mach number, thrust wall pressure, and whole history of detonation formation were examined in detail. Results showed that the shapes of the temporal and spatial distribution of discharge products do not change when equivalence ratio varies in one discharge cycle. However, due to the variation of the percentage of fuel and oxidizer, and its impact on the discharge elementary reactions, the number density of every key active particle declines while the decline amplitude decreases when equivalence ratio rises. Although the magnitudes of species concentration are not altered by the plasma, the reacted region extends towards the downstream flow more quickly. The influence of equivalence ratio on plasma assisted detonation initiation becomes remarkable until late in the subsonic stage of the flowfield evolution process in the combustor under a rich burn condition. Furthermore, a larger equivalence ratio leads to a better accelerating effect of the plasma. Through analyzing the dynamic process of thrust wall pressure, it is also found that the DDT process is expedited more notably under a larger equivalence ratio, yet the magnitude of pressure is independent of the plasma. The provision of active particles for the combustion reaction by the plasma and its dilution effect on the fuel are the two intrinsic reasons for the reduction of DDT time and distance and the increase of this reduction degree, when equivalence ratio rises. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:为了研究在富燃条件下等当量比对等离子体辅助爆轰起爆的影响,采用松耦合方法模拟了当量比不同的氢-氧混合气中交流电势垒放电的爆炸形成。首先分析了放电产物的时空演化。然后,详细检查了物种分布,马赫数,推力壁压力和整个爆炸过程。结果表明,当当量比在一个放电周期内变化时,放电产物的时空分布形状不变。然而,由于燃料和氧化剂的百分比的变化及其对放电基本反应的影响,当当量比增加时,每个关键活性粒子的数量密度下降,而下降幅度下降。尽管等离子体不会改变物质浓度的大小,但反应区域会更快地向下游流动。等当比对等离子辅助爆轰起爆的影响变得很明显,直到燃烧器在浓燃条件下流场演变过程的亚音速阶段的后期。此外,当量比越大,等离子体的加速效果越好。通过分析推力壁压力的动态过程,还发现在较大的当量比下,滴滴涕过程明显加快,而压力的大小与等离子体无关。当当量比增加时,通过等离子体为燃烧反应提供活性颗粒及其对燃料的稀释作用是减少DDT时间和距离以及减少程度增加的两个内在原因。 (C)2017 Elsevier Masson SAS。版权所有。

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