Experimental Investigation for Effects of Chamber Width on Rotating Detonation Engine with Liquid Fuel
1.Xi’an Modern Chemistry Research Institute,Xi’an 710065,China;2.National Key Lab of Transient Physics,Nanjing University of Science and Technology,Nanjing 210094,China
LI Bao-xing1, XU Gui-yang1, WENG Chun-sheng2, ZHAO Feng-qi1. Experimental Investigation for Effects of Chamber Width on Rotating Detonation Engine with Liquid Fuel[J]. Journal of Propulsion Technology, 2021, 42(2): 372-381.
[1] Bykovskii F A, Zhdan S A, Vedernikov E F. Continuous Spin Detonation of Fuel-Air Mixtures[J]. Combustion, Explosion, and Shock Waves, 2006, 42(4): 463-471.
[2] Bykovskii F A, Zhdan S A, Vedernikov E F. Continuous Spin Detonation of a Heterogeneous Kerosene-Air Mixture with Addition of Hydrogen[J]. Combustion, Explosion, and Shock Waves, 2016, 52(3): 371-373.
[3] Kindracki J. Experimental Research on Rotating Detonation in Liquid Fuel-Gaseous Air Mixtures[J]. Aerospace Science and Technology, 2015, 43(6): 445-453.
[4] 王 迪, 周 进, 林志勇. 煤油两相连续旋转爆震燃烧室工作特性试验研究[J]. 推进技术, 2017, 38(2):471-480.
[5] 郑 权, 翁春生, 白桥栋. 当量比对液体燃料旋转爆轰发动机爆轰影响实验研究[J]. 推进技术, 2015, 36(6): 947-952.
[6] 郑 权, 李宝星, 翁春生, 等. 双波对撞模态下的液态燃料旋转爆轰发动机推力测试研究[J]. 兵工学报, 2017, 38(4): 679-689.
[7] 李宝星, 翁春生. 连续旋转爆轰发动机气液两相爆轰波传播特性二维数值研究[J]. 固体火箭技术, 2015, 38(5): 646-652.
[8] Katta V R, Cho K Y, Hoke J L, et al. Effect of Increasing Channel Width on the Structure of Rotating Detonation Wave[J]. Proceedings of the Combustion Institute, 2019, 37(3): 3575-3583.
[9] Rankin B, Hoke J, Schauer F. Periodic Exhaust Flow Through a Converging-Diverging Nozzle Downstream of a Rotating Detonation Engine[R]. AIAA 2014-1015.
[10] Zhang H, Liu W, Liu S. Effects of Inner Cylinder Length on H2/Air Rotating Detonation[J]. International Journal of Hydrogen Energy, 2016, 41(30): 13281-13293.
[11] 高 剑, 武晓松, 马 虎, 等. 不同燃烧室长度的旋转爆震发动机实验研究[J]. 推进技术, 2016, 37(10): 1991-2000.
[12] Schwer D A, Kailasanath K. Numerical Study of the Effects of Engine Size on Rotating Detonation Engines[R]. AIAA 2011-581.
[13] Zhou Rui, Wang J P. Numerical Investigation of Shock Wave Reflections near the Head Ends of Rotating Detonation Engines[J]. Shock Waves, 2013, 23(5): 461-472.
[14] 刘 倩, 郑洪涛, 李智明, 等. 连续旋转爆轰燃烧室的性能[J]. 航空动力学报, 2015, 30(6): 1328-1336.
[15] 刘世杰. 连续旋转爆震波结构、传播模态及自持机理研究[D]. 长沙:国防科学技术大学, 2012.