离子风
等离子体驱动器
喷嘴
燃烧室
等离子体
材料科学
机械
燃烧
喷油器
流量控制(数据)
电极
航空航天工程
化学
介质阻挡放电
机械工程
物理
工程类
电信
量子力学
物理化学
有机化学
作者
Maria Grazia De Giorgi,Sara Bonuso,Ghazanfar Mehdi,Mohamed Shamma,Stefan Harth,Nikolaos Zarzalis,Dimosthenis Trimis
出处
期刊:Notes on numerical fluid mechanics and multidisciplinary design
日期:2021-11-12
卷期号:: 66-82
被引量:3
标识
DOI:10.1007/978-3-030-90727-3_5
摘要
This study focuses on the effects of continuous volumetric discharge of sinusoidal plasma actuator at 20 kHz coupled directly with methane-air premixed flame in the near field of the injector exit. A plasma actuator composed of a needle-type electrode placed at the center of the nozzle, connected with high-voltage, while the nozzle was acted as a grounded electrode with different input electrical power values was designed to enhance lean blowout performance in a swirl model combustor. The ionic wind induced by the electrical body force given by the flow ionization leads to velocity disturbance and subsequently affects the flame. To investigate the possible mechanism of the combustion control by the plasma through the aerodynamic effect high speed flow visualization was analyzed under quiescent conditions. Flow visualizations showed that the plasma discharge affects the flow dynamics near the burner exit. It was observed that by increasing the electrical power used for the actuation a recirculation zone is formed in the non-reacting flow field. Furthermore, comparative experiments between conventional and plasma-assisted combustion were carried out to analyze the combustion enhancement in terms of lean blowout performance. The effect of the input electric power of the plasma actuator was studied, and it was seen that at coupled plasma powers corresponding to less than 1% of the thermal output power, there is a significant improvement in the blow-out limit. KeywordsLifted flameLow swirl combustorPlasma assisted combustionLean blow-out
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