PDF下载 分享
[1]刘倩,李敬轩,孙纪国,等.高压氢氧火箭发动机推力室燃烧稳定性分析[J].火箭推进,2022,48(02):66-75.
 LIU Qian,LI Jingxuan,SUN Jiguo,et al.Analysis on combustion stability of thrust chamber in high pressure hydrogen-oxygen rocket engine[J].Journal of Rocket Propulsion,2022,48(02):66-75.
点击复制

高压氢氧火箭发动机推力室燃烧稳定性分析

参考文献/References:

[1] 丁兆波, 孙纪国, 路晓红.国外典型大推力氢氧发动机推力室技术方案综述[J].导弹与航天运载技术, 2012(4):27-30.
[2] 郑孟伟, 岳文龙, 孙纪国, 等.我国大推力氢氧发动机发展思考[J].宇航总体技术, 2019, 3(2):12-17.
[3] 丁兆波, 许晓勇, 乔桂玉, 等.氢氧火箭发动机动态燃烧稳定性评定技术研究[J].导弹与航天运载技术, 2013(1):38-41.
[4] 田原, 李丹琳, 孙纪国, 等.同轴剪切喷嘴高频喷注耦合燃烧不稳定分析[J].火箭推进, 2014, 40(3):23-28.TIAN Y, LI D L, SUN J G, et al.Instability analysis on high-frequency injection-coupled combustion of shear coaxial injector[J].Journal of Rocket Propulsion, 2014, 40(3):23-28.
[5] BAI X,LI Q L,CHENG P,et al.Flame oscillation characteristics for liquid-centered swirl coaxial injectors[J].Journal of Propulsion Technology, 2021, 42(7):1593-1605.
[6] CAO P J, BAI X, LI Q L, et al.Experimental study on the unsteady spray combustion process of a liquid oxygen/methane swirl coaxial injector[J].ACS Omega, 2021, 6(40):26191-26200.
[7] 杨V, 安德松W E.液体火箭发动机燃烧不稳定性[M].张宝炯,译.北京:科学出版社, 2001.
[8] DENNIS H, HUTT J, NESMAN T.Stability testing of a modified Space Shuttle Main Engine[C]//27th Joint Propulsion Conference.Reston, Virginia:AIAA, 1991.
[9] FEILER C E, MORGAN C J, WANHAINEN J P.Effect of chamber pressure, flow per element, and contraction ratio on acoustic-mode instability in hydrogen-oxygen rockets[R].NASA TN D-4733, 1968.
[10] GR?ING S, HARDI J, SUSLOV D, et al.Influence of hydrogen temperature on the stability of a rocket engine combustor operated with hydrogen and oxygen[J].CEAS Space Journal, 2017, 9(1):59-76.
[11] 丁兆波, 刘倩, 王天泰, 等.220 t级补燃循环氢氧发动机推力室研制[J].火箭推进, 2021, 47(4):13-21.
DING Z B, LIU Q, WANG T T, et al.Development for thrust chamber of 220 t staged combustion cycle LOX/LH2 engine[J].Journal of Rocket Propulsion, 2021, 47(4):13-21.
[12] GICQUEL L Y M, STAFFELBACH G, POINSOT T.Large eddy simulations of gaseous flames in gas turbine combustion chambers[J].Progress in Energy and Combustion Science, 2012, 38(6):782-817.
[13] SELLE L, LARTIGUE G, POINSOT T, et al.Compressible large eddy simulation of turbulent combustion in complex geometry on unstructured meshes[J].Combustion and Flame, 2004, 137(4):489-505.
[14] STAFFELBACH G, GICQUEL L Y M, BOUDIER G, et al.Large Eddy Simulation of self excited azimuthal modes in annular combustors[J].Proceedings of the Combustion Institute, 2009, 32(2):2909-2916.
[15] URBANO A, SELLE L, STAFFELBACH G, et al.Exploration of combustion instability triggering using Large Eddy Simulation of a multiple injector liquid rocket engine[J].Combustion and Flame, 2016, 169:129-140.
[16] GR?ING S, HARDI J S, SUSLOV D, et al.Injector-driven combustion instabilities in a hydrogen/oxygen rocket combustor[J].Journal of Propulsion and Power, 2016, 32(3):560-573.
[17] 尕永婧, 张会强, 王希麟.雾化角对液体火箭发动机燃烧室压力振荡的影响[J].工程热物理学报, 2012, 33(5):883-886.
[18] HAN X S, LI J X, MORGANS A S. Prediction of combustion instability limit cycle oscillations by combining flame describing function simulations with a thermoacoustic network model[J]. Combustion and Flame, 2015, 162(10): 3632-3647.
[19] LI J X, XIA Y, MORGANS A S, et al. Numerical prediction of combustion instability limit cycle oscillations for a combustor with a long flame[J]. Combustion and Flame, 2017,185: 28-43.
[20] DURAN I, MOREAU S. Solution of the quasi-one-dimensional linearized Euler equations using flow invariants and the Magnus expansion[J]. Journal of Fluid Mechanics, 2013, 723: 190-231.
[21] LAERA D, SCHULLER T, PRIEUR K, et al. Flame describing function analysis of spinning and standing modes in an annular combustor and comparison with experiments[J]. Combustion and Flame, 2017, 184: 136-152.

备注/Memo

收稿日期:2022-01-20 修回日期:2022-03-04
基金项目:国家自然科学基金青年项目(51606138)
作者简介:刘倩(1987—),女,博士,高级工程师,研究领域为液体火箭发动机燃烧装置设计。

更新日期/Last Update: 1900-01-01