比较不同外部电极对放电等离子体辅助扩散火焰稳定的影响

Siyin Zhou, Xiang Liu, Wansheng Nie, Shuhui Yuan
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摘要

为了优化等离子体喷射器的设计,利用非平衡等离子体喷射器火焰控制装置评估了不同外部电极对等离子体辅助火焰稳定的影响。利用电学和光学方法分析了不同外部电极(四个网状电极和一个铜箔电极)下的喷射器电气特性、火焰结构参数、火焰强度、放电功率和成本效益比。结果表明,减小外部电极的网孔尺寸会导致击穿电压降低。与基于陶瓷电介质屏障的喷射器相比,石英电介质屏障喷射器在相同条件下产生的击穿电压更高。在相同的致动电压下,放电电流会随着外部电极网孔尺寸的减小而增大,放电等离子体会促进燃烧;因此,最好采用较小的网孔尺寸,以便在较低的致动电压下实现良好的火焰稳定性。然而,在所研究的工作条件下,减小外部电极的网孔尺寸会增加基于等离子体喷射器的火焰稳定的成本效益比。因此,考虑到成本效益比和喷射器的重量,应选择网孔尺寸较大的外部电极,这与上述规则相矛盾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of the effect of different external electrodes on discharge plasma-assisted diffusion flame stabilization
To optimize the design of plasma injectors, the influence of different external electrodes on plasma-assisted flame stabilization was assessed by using a nonequilibrium plasma injector flame control setup. The electrical characteristics of the injector, flame structure parameters, flame intensity, discharge power, and cost-to-effectiveness ratio under different external electrodes (four mesh electrodes and one copper foil electrode) were analyzed using electrical and optical methods. The results show that reducing the mesh size of the external electrode leads to a decrease in breakdown voltage. Compared with a ceramic dielectric barrier-based injector, an injector with a quartz dielectric barrier produces a higher breakdown voltage under the same conditions. For the same actuation voltage, the discharge current increases as the mesh size of the external electrode decreases, and combustion is enhanced by the discharge plasma; therefore, it is better to adopt a smaller mesh hole size to realize good flame stabilization under a lower actuation voltage. However, under the studied working conditions, reducing the mesh hole size of the external electrode increases the cost-to-effectiveness ratio of plasma injector-based flame stabilization. Thus, considering the cost-to-effectiveness ratio and the weight of the injector, an external electrode with a larger mesh hole size should be chosen, which contradicts the above rule.
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