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超声速气流中煤油喷雾的热射流强迫点火
引用本文:席文雄,王振国,李庆,梁剑寒.超声速气流中煤油喷雾的热射流强迫点火[J].航空动力学报,2012,27(11):2436-2441.
作者姓名:席文雄  王振国  李庆  梁剑寒
作者单位:国防科学技术大学高超声速冲压发动机技术重点实验室,长沙,410073
基金项目:国家自然科学基金(11102230)
摘    要:在来流马赫数为2、总温为840K的双模态超燃冲压发动机扩张型燃烧室的冷起动工况条件下,对凹腔上游的煤油横向射流喷雾的热射流强迫点火过程进行了试验研究.采用高速相机拍摄了点火过程中的煤油喷雾阴影和自发光火焰的动态发展图像,对比分析了热射流喷射位置和喷射方向对点火试验结果及其凹腔驻留火焰形成的影响.试验结果表明:热射流点火主要以凹腔下游热射流与煤油喷雾的掺混燃烧为主要特征;远场的火焰逆流传播形成凹腔驻留火焰是热射流实现成功点火的主要机制.

关 键 词:点火  煤油喷雾  热射流  火焰传播  凹腔驻留火焰
收稿时间:2012/2/21 0:00:00

Forced ignition of kerosene spray in supersonic airflow with hot gas injection
XI Wen-xiong,WANG Zhen-guo,LI Qing and LIANG Jian-han.Forced ignition of kerosene spray in supersonic airflow with hot gas injection[J].Journal of Aerospace Power,2012,27(11):2436-2441.
Authors:XI Wen-xiong  WANG Zhen-guo  LI Qing and LIANG Jian-han
Institution:Science and Technology on Scramjet Laboratory, National University of Defense Technology, Changsha 410073, China;Science and Technology on Scramjet Laboratory, National University of Defense Technology, Changsha 410073, China;Science and Technology on Scramjet Laboratory, National University of Defense Technology, Changsha 410073, China;Science and Technology on Scramjet Laboratory, National University of Defense Technology, Changsha 410073, China
Abstract:Forced ignition of kerosene spray with hot gas injection was investigated experimentally in an expanding scramjet combustor with incoming air total temperature of 800K and Mach number 2 which was related to a typical cold start-up condition of dual-model scramjet.The fuel was injected vertically into the crossflow upstream the flame-holding cavity.The kerosene spray shadow and self-luminosity flame evolvement during the process of ignition were observed using high speed camera.The effects of injection scheme such as position and direction of hot jet on the ignition results and cavity-trapped flame generation were compared and analyzed.Results reveal that the enhanced ignition by hot gas injection is characterized by the far-field diffusive burning between spray and hot jet.The trapped flame within cavity is created due to the flame propagation upstream which is the dominant mechanism of successful flame establishment.
Keywords:ignition  kerosene spray  hot gas injection  flame propagation  trapped flame within cavity
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