PDF下载 分享
[1]吴有亮,张成印,潘 浩,等.再生冷却燃气对流换热系数计算方法优化研究[J].火箭推进,2018,44(01):22-26.
 WU Youliang,ZHANG Chengyin,PAN Hao,et al.Optimization for calculation method of gas convective heat transfer coefficient inside regeneratively-cooled chamber[J].Journal of Rocket Propulsion,2018,44(01):22-26.
点击复制

再生冷却燃气对流换热系数计算方法优化研究

参考文献/References:

[1] 孙宏明.液氧/甲烷发动机评述[J].火箭推进,2012,32(2):23-31.
SUN Hongming. Review of liquid oxygen/methane rocket engine [J]. Journal of rocket propulsion, 2012, 32(2): 23-31.
[2] 王治军. 液体火箭发动机推力室设计[M]. 北京:国防工业出版社, 2014.
[3] 李军伟,刘宇.一种计算再生冷却推力室温度场的方法[J].航空动力学报,2004,8(4): 550-556.
[4] MATTEO F D. Modelling and simulation of liquid rocket engine ignition transients [D]. Rome: Sapienza University of Roma, 2011.
[5] PAVLICA J, CURLEY J K, MASTERS P A, SCHWARTZ R M. Design and cooling performance of a dump cooled rocket engine: TND-3532 [R]. USA: NASA, 1966.
[6] 孙鑫,杨成虎.5kN再生冷却推力室传热研究[J].火箭推进,2012,38(2):32-37.
SUN Xin, YANG Chenghu.Heat transfer investigation for 5kN regeneratively-cooled engine thrust chamber [J]. Journal of rocket propulsion, 2012, 38(2): 32-37.
[7] 汪小卫,金平,孙冰.全流量补燃循环发动机推力室再生冷却技术研究[J].航空动力学报,2008,23(5): 909-915.
[8] 刘国球.液体火箭发动机原理[M]. 北京:宇航出版社,1993.
[9] 杨世铭,陶文铨.传热学.3版. 北京:高等教育出版社,2002.

相似文献/References:

[1]张卫红,石文靓,郑孟伟.一种双钟型喷管液氧/甲烷发动机系统方案[J].火箭推进,2013,39(03):9.
 ZHANG Wei-hong,SHI Wen-jing,ZHENG Meng-wei.System configuration of LOX/methane rocket engine with dual-bell nozzle[J].Journal of Rocket Propulsion,2013,39(01):9.
[2]王 珺,张卫红,石文靓,等.60 t级液氧/甲烷发动机起动过程建模与仿真[J].火箭推进,2013,39(05):16.
 WANG Jun,ZHANG Wei-hong,SHI Wen-jing,et al.Modeling and simulation of start-up process of 60 t class LOX/methane liquid rocket engine[J].Journal of Rocket Propulsion,2013,39(01):16.
[3]孙宏明.液氧/甲烷发动机评述[J].火箭推进,2006,32(02):23.
 Sun Hongming.Review of liquid oxygen/methane rocket engine[J].Journal of Rocket Propulsion,2006,32(01):23.
[4]张 明,孙 冰.液氧/甲烷发动机变截面冷却通道传热数值研究[J].火箭推进,2019,45(02):9.
 ZHANG Ming,SUN Bing.Numerical study of heat transfer in variable cross-section cooling channels of LOX/methane rocket engines[J].Journal of Rocket Propulsion,2019,45(01):9.
[5]刘朝晖,宋晨阳,陈 强,等.吸热型碳氢燃料再生冷却性能评估方法[J].火箭推进,2020,46(02):15.
 LIU Zhaohui,SONG Chenyang,CHEN Qiang,et al.Evaluation methods on regenerative cooling performance for endothermic hydrocarbon fuel[J].Journal of Rocket Propulsion,2020,46(01):15.
[6]吴有亮,丁煜朔,刘 潇,等.再生冷却推力室准二维传热数值计算[J].火箭推进,2023,49(02):66.
 WU Youliang,DING Yushuo,LIU Xiao,et al.Quasi-2D heat transfer calculation method of regenerative cooling thrust chamber[J].Journal of Rocket Propulsion,2023,49(01):66.
[7]陈锐达,徐辉,陈泓宇,等.1.5 tf再生冷却液体火箭发动机关键技术与试验验证[J].火箭推进,2023,49(04):17.
 CHEN Ruida,XU Hui,CHEN Hongyu,et al.Key technologies and test verification of 1.5 tf liquid rocket engine with regenerative cooling[J].Journal of Rocket Propulsion,2023,49(01):17.
[8]卞香港,李龙飞,王化余,等.基于3D打印的过氧化氢/煤油再生冷却推力室设计及试验[J].火箭推进,2023,49(04):74.
 BIAN Xianggang,LI Longfei,WANG Huayu,et al.Design and experiment of hydrogen peroxide/kerosene thrust chamber with regenerative cooling based on 3D printing[J].Journal of Rocket Propulsion,2023,49(01):74.

备注/Memo

收稿日期:2017-06-30; 修回日期:2017-08-09 作者简介: 吴有亮(1993—),男,硕士研究生,研究领域为液体火箭发动机系统设计

更新日期/Last Update: 1900-01-01