| Citation: | PENG Changxin, YANG Hao, LIU Yibo, et al. Exploratory test on ignition with rotating gliding arc swirlers[J]. Journal of Aerospace Power, 2023, 38(4):769-776 doi: 10.13224/j.cnki.jasp.20220461 |
According to the position of gliding arcs, four kinds of rotating gliding arc swirlers were designed and manufactured based on the beveled holes and radial vanes swirlers commonly used in medium and small aero-engine combustors. The discharge test at cold state and ignition test were performed. The results of discharge test showed that the four swirlers could produce stable rotating gliding arcs at specific position. Ignition tests were performed based on a triple combustor. The ignition tests showed that, scheme 4 had the best ignition performance and the smallest ignition fuel-air ratio was lower if compared with conventional ignition method. The ignition performance of scheme 2 was worse than that of scheme 4. The combustor could only be ignited when the reference speed was low for scheme 3, and scheme 1 showed the worst ignition performance. The air speed and distribution of fuel air at local position of gliding arcs had a significant influence on the ignition performance and the recommended air speed was not more than 20 m/s.
| [1] |
于锦禄,黄丹青,王思博,等. 等离子体点火与助燃技术在航空发动机上的应用[J]. 航空发动机,2018,44(3): 12-20. doi: 10.13477/j.cnki.aeroengine.2018.03.002
YU Jinlu,HUANG Danqing,WANG Sibo,et al. Application of plasma ignition and combustion of aeroengine[J]. Aeroengine,2018,44(3): 12-20. (in Chinese) doi: 10.13477/j.cnki.aeroengine.2018.03.002
|
| [2] |
李平,穆海宝,喻琳,等. 低温等离子体辅助燃烧的研究、关键问题及展望[J]. 高电压技术,2015,41(6): 2073-2083.
LI Ping,MU Haibao,YU Lin,et al. Progress, key problems and prospect on low temperature plasma assisted combustion[J]. High Voltage Engineering,2015,41(6): 2073-2083. (in Chinese)
|
| [3] |
OMBRELLO T,WON S H,JU Y G,et al. Flame propagation enhancement by plasma excitation of oxygen: Part Ⅰ effects of O3[J]. Combustion and Flame,2010,157(10): 1906-1915. doi: 10.1016/j.combustflame.2010.02.005
|
| [4] |
KLIMOV A, BROVKIN V, BITYURIN V, et al. Plasma assisted combustion[R]. AIAA-2001-0491, 2001.
|
| [5] |
KLIMOV A, BITYURIN V, BROVKIN V, et al. Optimization of plasma generators for plasma assisted combustion[R]. AIAA-2001-2874, 2001.
|
| [6] |
KLIMOV A, BITIURIN V, MORALEV I, et al. Non-premixed plasma assisted combustion of hydrocarbon fuel in high-speed airflow[R]. AIAA-2006-0617, 2006.
|
| [7] |
KIM W, DO H, MUNGAL M, et al. Flame stabilization enhancement and NOx production using ultra short repetitively pulsed plasma discharges reston[R]. AIAA-2006-0560, 2006.
|
| [8] |
YANG S, NAGARAJA S, SUN W, et al. A detailed comparison of thermal ignition and nanosecond pulsed plasma assisted ignition of hydrogen-air mixtures[R]. AIAA- 2015-1615, 2015.
|
| [9] |
陈朝, 于锦禄, 张磊, 等. 基于滑动弧的新型燃烧室头部电弧运动特性研究[C]//第九届中国航空学会青年科技论坛论文集. 西安: 中航出版传媒有限责任公司, 2020: 708-713.
|
| [10] |
何立明,雷健平,陈一,等. 大气压交流旋转滑动弧的放电特性[J]. 高电压技术,2017,43(9): 3061-3069.
HE Liming,LEI Jianping,CHEN Yi,et al. Characteristic of atmospheric pressure AC rotating gliding arc discharge[J]. High Voltage Engineering,2017,43(9): 3061-3069. (in Chinese)
|
| [11] |
OMBRELLO T,QIN X,JU Y G,et al. Combustion enhancement via stabilized piecewise nonequilibrium gliding arc plasma discharge[J]. AIAA Journal,2006,44(1): 142-150. doi: 10.2514/1.17018
|
| [12] |
FRIDMAN A,GUTSOL A,GANGOLI S,et al. Characteristics of gliding arc and its application in combustion enhancement[J]. Jouranl of Propulsion and Power,2008,24(6): 1216-1228. doi: 10.2514/1.24795
|
| [13] |
OMBRELLO T,JU Y G,FRIDMAN A. Kinetic ignition enhancement of diffusion flames by nonequilibrium magnetic gliding arc plasma[J]. AIAA Journal,2008,46(10): 2424-2433. doi: 10.2514/1.33005
|
| [14] |
OMBRELLO T, JU Y G, GANGOLI S, et al Ignition enhancement using magnetic gliding arc[R]. AIAA 2007-1025, 2007.
|
| [15] |
雷健平,何立明,陈一,等. 旋转滑动弧放电等离子体滑动放电模式的实验研究[J]. 物理学报,2020,69(19): 226-237. doi: 10.7498/aps.69.20200672
LEI Jianping,HE Liming,CHEN Yi,et al. Experimental study on gliding discharge mode of rotating gliding arc discharge plasma[J]. Acta Physica Sinica,2020,69(19): 226-237. (in Chinese) doi: 10.7498/aps.69.20200672
|
| [16] |
何立明,张达,陈一,等. 三维旋转滑动弧等离子体助燃激励器的光谱特性实验[J]. 空军工程大学学报(自然科学版),2017,18(4): 1-6.
HE Liming,ZHANG Da,CHEN Yi,et al. An experimental of spectral characteristics on plasma-assisted combustion with 3D rotating gliding arc discharge[J]. Journal of Air Force Engineering University (Natural Science Edition),2017,18(4): 1-6. (in Chinese)
|
| [17] |
费力,张磊,何立明,等. 环境压力对滑动弧放电等离子体助燃激励器特性的影响研究[J]. 高压电器,2019,55(7): 127-134.
FEI Li,ZHANG Lei,HE Liming,et al. Investigation on the influence of environmental pressure on the gliding arc discharge plasma actuator combustion characteristics[J]. High Voltage Apparatus,2019,55(7): 127-134. (in Chinese)
|
| [18] |
刘雄,何立明,戴文峰,等. 直流滑动弧等离子体点火器特性的实验研究[J]. 推进技术,2020,41(7): 1550-1559.
LIU Xiong,HE Liming,DAI Wenfeng,et al. Experimental study on characteristics of DC gliding arc plasma igniter[J]. Journal of Propulsion Technology,2020,41(7): 1550-1559. (in Chinese)
|
| [19] |
陈朝,于锦禄,张磊,等. 基于等离子体的新型燃烧室头部工作特性实验研究[J]. 推进技术,2020,41(12): 2766-2773.
CHEN Zhao,YU Jinlu,ZHANG Lei,et al. Experimental study on working characteristics of new combustion chamber head based on plasma[J]. Journal of Propulsion Technology,2020,41(12): 2766-2773. (in Chinese)
|
| [20] |
胡长淮,何立明,陈一,等. 燃烧室头部激励的等离子体强化燃烧特性实验研究[J]. 推进技术,2021,42(12): 2762-2771. doi: 10.13675/j.cnki.tjjs.200346
HU Changhuai,HE Liming,CHEN Yi,et al. Experimental research on the characteristics of plasma-enhanced combustion excited by the combustor dome[J]. Journal of Propulsion Technology,2021,42(12): 2762-2771. (in Chinese) doi: 10.13675/j.cnki.tjjs.200346
|
| [21] |
HE Liming,CHEN Yi,DENG Jun,et al. Experimental study of rotating gliding arc discharge plasma-assisted combustion in an aero-engine combustion chamber[J]. Chinese Journal of Aeronautics,2019,32(2): 333-346.
|