Experimental research on rotating detonation with liquid hypergolic propellants

被引:0
作者
Shuaijie XUE
Hongjun LIU
Lixin ZHOU
Weidong YANG
Hongbo HU
Yu YAN
机构
[1] ScienceandTechnologyonLiquidRocketEngineLaboratory,Xi'anAerospacePropulsionInstitute
关键词
Hypergolic; Initiation; Liquid propellant; Nozzle; Rotating detonation;
D O I
暂无
中图分类号
V430 [发动机理论与计算];
学科分类号
080703 ; 082502 ;
摘要
This paper describes experimental research into the initiation and propagation of rotating detonation for liquid Nitrogen TetrOxide(NTO) and liquid MonoMethylHydrazine(MMH).An annular rocket-type combustor without nozzle was designed to investigate detonation combustion. The propellants were injected through unlike impingement injectors. The combustion flame fronts and pressure waves were detected using optical diagnostics and dynamic pressure sensors,respectively. The propagation of rotating detonation was established spontaneously by increasing the mass flow rate of propellants. The velocity of propagation of the flame fronts and pressure waves was nearly equal and reaches supersonic speed. Two different detonation combustion patterns are present, single wave mode and double waves mode. And in double waves mode, the two detonation waves are always counter-rotating. The possibility of rotating detonation initiation in a combustor with nozzle was also checked. Stable rotating detonation can be initialized and sustained at similar operating conditions.
引用
收藏
页码:2199 / 2205
页数:7
相关论文
共 13 条
[1]  
Experimental Research on the Propagation Process of Continuous Rotating Detonation Wave[J]. Quan ZHENG,Chun-sheng WENG,Qiao-dong BAI.Defence Technology. 2013(04)
[2]   激波诱导液滴变形和破碎现象实验研究 [J].
耿继辉 ;
叶经方 ;
王健 ;
李鸿志 .
工程热物理学报, 2003, (05) :797-800
[3]  
Experimental investigation on detonation combustion patterns of hydrogen/vitiated air within annular combustor[J] . Chao Wang,Weidong Liu,Shijie Liu,Luxin Jiang,Zhiyong Lin.Experimental Thermal and Fluid Science . 2015
[4]  
Experimental research on rotating detonation in liquid fuel–gaseous air mixtures[J] . Jan Kindracki.Aerospace Science and Technology . 2015
[5]  
Fluid dynamics of rotating detonation engines with hydrogen and hydrocarbon fuels[J] . Douglas Schwer,K. Kailasanath.Proceedings of the Combustion Institute . 2013 (2)
[6]  
Detonative propulsion[J] . Piotr Wolański.Proceedings of the Combustion Institute . 2013 (1)
[7]  
Experimental research on the propagation process of continuous rotating detonation wave[J] . Quan ZHENG,Chun-sheng WENG,Qiao-dong BAI.Defence Technology . 2013
[8]  
Experimental research on the rotating detonation in gaseous fuels–oxygen mixtures[J] . J. Kindracki,P. Wolański,Z. Gut.Shock Waves . 2011 (2)
[9]   Propulsive Performance of a Continuously Rotating Detonation Engine [J].
Yi, Tae-Hyeong ;
Lou, Jing ;
Turangan, Cary ;
Choi, Jeong-Yeol ;
Wolanski, Piotr .
JOURNAL OF PROPULSION AND POWER, 2011, 27 (01) :171-181
[10]   Fundamentals of rotating detonations [J].
Hishida, Manabu ;
Fujiwara, Toshi ;
Wolanski, Piotr .
SHOCK WAVES, 2009, 19 (01) :1-10