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[1]李斌,张蒙正,黄道琼,等.组合发动机研究中若干问题探讨[J].火箭推进,2022,48(06):1-8.
 LI Bin,ZHANG Mengzheng,HUANG Daoqiong,et al.Discussion on some problems in combined engine research[J].Journal of Rocket Propulsion,2022,48(06):1-8.
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组合发动机研究中若干问题探讨

参考文献/References:

[1] KATO K,KANDA T,KUDO K,et al.Mach-8 tests of a combined-cycle engine combustor[J].Journal of Propulsion and Power,2007,23(5):1018-1022.
[2] 石磊,赵国军,杨一言,等.中心支板式RBCC发动机引射模态流动与燃烧研究[J].推进技术,2020,41(10):2292-2301.
[3] 陈军,白菡尘.RBCC引射模态气流抵抗反压能力受掺混程度影响研究[J].推进技术,2022,43(4):37-45.
[4] 刘娟,潘余,刘卫东,等.超燃冲压发动机双凹腔燃烧室氢气燃烧流场分析[J].航空动力学报,2009,24(11):2501-2505.
[5] 刘世杰,潘余,刘卫东.带支板超燃冲压发动机燃烧流动过程试验研究[J].弹箭与制导学报,2009,29(1):166-168.
[6] 刘世杰,潘余,刘卫东.超燃冲压发动机支板喷射燃料的燃烧过程试验[J].航空动力学报,2009,24(1):55-59.
[7] 高振勋,李椿萱.超燃冲压发动机燃烧室内湍流燃烧流场的数值模拟研究[J].中国科学(技术科学),2010,40(8):929-939.
[8] 牛东圣,侯凌云,潘鹏飞,等.超燃冲压发动机内外流场三维燃烧数值模拟[J].航空动力学报,2014,29(4):763-769.
[9] 梁剑寒,王承尧.超燃冲压发动机燃烧室三维化学反应流场的数值模拟[J].推进技术,1997,18(4):1-4.
[10] ROUDAKOV A,SEMENOV V,HICKS J.Recent flight test results of the joint CIAM-NASA Mach 6.5 scramjet flight program[C]//8th AIAA International Space Planes and Hypersonic Systems and Technologies Conference.Reston,Virginia:AIAA,1998.
[11] BOUCHEZ M,ROUDAKOV A,KOPCHENOV V,et al.French-Russian analysis of kholod dual-mode ramjet flight experiments[C]//AIAA/CIRA 13th International Space Planes and Hypersonics Systems and Technologies Conference.Reston,Virginia:AIAA,2005.
[12] FERLEMANN S,MCCLINTON C,ROCK K,et al.Hyper-X Mach 7 scramjet design,ground test and flight results[C]//AIAA/CIRA 13th International Space Planes and Hypersonics Systems and Technologies Conference.Reston,Virginia:AIAA,2005.
[13] FOELSCHE R,LEYLEGIAN J,BETTI A,et al.Progress on the development of a freeflight atmospheric scramjet test technique[C]//AIAA/CIRA 13th International Space Planes and Hypersonics Systems and Technologies Conference.Reston,Virginia:AIAA,2005.
[14] MORELLI E,DERRY S,SMITH M.Aerodynamic parameter estimation for the X-43A(hyper-X)from flight data[C]//AIAA Atmospheric Flight Mechanics Conference and Exhibit.Reston,Virginia:AIAA,2005.
[15] MARSHALL L,CORPENING G,SHERRILL R.A chief engineers view of the NASA X-43A scramjet flight test[C]//AIAA/CIRA 13th International Space Planes and Hypersonics Systems and Technologies Conference.Reston,Virginia:AIAA,2005.
[16] HANK J,MURPHY J,MUTZMAN R.The X-51A scramjet engine flight demonstration program[C]//15th AIAA International Space Planes and Hypersonic Systems and Technologies Conference.Reston,Virginia:AIAA,2008.
[17] HASS N E,SMART M K,PAULL A.Flight data analysis of HyShot 2[R].AIAA 2005-3354.
[18] STEVEN W,FREDERICK R,ALAN P,et al.HyCAUSE flight test program[R].AIAA 2008-2580.
[19] UEDA S,HIRAIWA T,TAKEGOSHI M,et al.Subsonic flight experiments of ejector-rocket using hybrid-rocket CAMUI[C]//16th AIAA/DLR/DGLR International Space Planes and Hypersonic Systems and Technologies Conference.Reston,Virginia:AIAA,2009.
[20] 顾炎武.整体式固体火箭冲压发动机飞行试验[J].推进技术,2008,29(1):75-78.
[21] 赵天爽.不同试验模拟准则对超燃冲压发动机影响研究[C]//第六届冲压发动机技术交流会论文集.北京:北京动力机械研究所,2017.
[22] 毛雄兵,谭宇.吸气式推进试验关键模拟准则浅析[C]//第七届冲压发动机技术交流会论文集.绵阳:中国空气动力研究与发展中心高超声速冲压发动机技术重点实验室,2019.
[23] 刘坤伟,朱雨建,杨基明,等.两种燃烧加热风洞参数匹配方案的比较[J].推进技术,2017,38(6):1226-1234.
[24] 谭宇,毛雄兵,焦伟,等.燃烧风洞不同模拟方式对超燃发动机性能影响试验研究[J].推进技术,2017,38(9):2062-2068.
[25] 张蒙正.燃烧不稳定性模拟实验技术[M].西安:西北工业大学出版社,2017.

备注/Memo

收稿日期:2022-07-09 修回日期:2022-08-22
作者简介:李斌(1969—),男,博士,研究员,研究领域为液体动力系统。

更新日期/Last Update: 1900-01-01