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固液火箭发动机试验燃速的计算

吴俊峰 田辉 李君海 俞南嘉 蔡国飙

吴俊峰, 田辉, 李君海, 俞南嘉, 蔡国飙. 固液火箭发动机试验燃速的计算[J]. 航空动力学报, 2013, 28(4): 941-946.
引用本文: 吴俊峰, 田辉, 李君海, 俞南嘉, 蔡国飙. 固液火箭发动机试验燃速的计算[J]. 航空动力学报, 2013, 28(4): 941-946.
WU Jun-feng, TIAN Hui, LI Jun-hai, YU Nan-jia, CAI Guo-biao. Calculation of experimental regression rate of hybrid rocket motor[J]. Journal of Aerospace Power, 2013, 28(4): 941-946.
Citation: WU Jun-feng, TIAN Hui, LI Jun-hai, YU Nan-jia, CAI Guo-biao. Calculation of experimental regression rate of hybrid rocket motor[J]. Journal of Aerospace Power, 2013, 28(4): 941-946.

固液火箭发动机试验燃速的计算

Calculation of experimental regression rate of hybrid rocket motor

  • 摘要: 基于固液火箭发动机固体药柱燃速与药柱通道氧化剂质量流率的关系,推导分析得出:在2s短工作时间内或者药柱通道直径增大10%的情况下,燃烧室压力与其氧化剂质量流量成正比.因此通过试验测量的燃烧室压力可计算得到发动机转级或者关机拖尾段中的氧化剂质量流量.据此,计算发动机拖尾段消耗的燃料质量,消除发动机拖尾段燃料消耗对平均燃速的影响,可以修正常用的计算试验燃速的起止点平均法.利用此方法对两种试验推进剂组合的燃速进行了计算,原偏高的燃速值降低约20%,不同尺寸发动机的燃速符合尺寸规律,偏差在5%以内,使小尺寸发动机测得的燃速可应用到大尺寸发动机的设计中.

     

  • [1] Marxman G A,Gilbert M.Turbulent boundary layer combustion in the hybrid rocket[J].Symposium on Combustion and Flame,and Explosion Phenomena,1963,9(1):371-383.
    [2] Altman D,Humble R.Hybrid rocket propulsion systems[M]//Humber R,Henry G,Larson W.Space propulsion analysis and design.New York:The McGraw-Hill Company,1995.
    [3] Marxman G A,Wooldridge C E,Muzzy R J.Fundamentals of hybrid boundary layer combustion[J].Progress Astronautics and Aeronaotics,1964,15:485-522.
    [4] Strand L D,Jones M D,Ray R L.Characterization of hybrid rocket internal heat flux and HTPB fuel pyrolysis [R].AIAA-94-2876,1994.
    [5] Estey P N,Altman D,McFarlane J S.An evaluation of scaling effects for hybrid rocket motors [R].AIAA-91-2517,1991.
    [6] Kosdon F J,Williams F A.Pressure dependence of nonmetalized hybrid fuel regression rate[J].AIAA Journal,1967,5(4):774-777.
    [7] Chiaverini M J,Kuo K K.Fundamentals of hybrid rocket combustion and propulsion[M].Virginia,US:American Institute of Aeronautics and Astronautics Inc.,2007.
    [8] Wernimont E J,Heister S D.Reconstruction technique for reducing hybrid rocket combustion test data[J].Journal of Propulsion and Power,1999,15(1):128-136.
    [9] 李新田,曾鹏,田辉,等.固液火箭发动机试验瞬时燃速分析方法[J].推进技术,2012,33(2):211-215. LI Xintian,ZENG Peng,TIAN Hui,et al.Instantaneous fuel regression rate analysis of hybrid rocket motor experiment[J].Journal of Propulsion Technology,2012,33(2):211-215.(in Chinese)
    [10] 杨威,许敏.固液混合发动机燃面退移规律辩识方法[J].推进技术,2006,27(6):481-483. YANG Wei,XU Ming.Method for identification the regression rate in hybrid motor[J].Journal of Propulsion Technology,2006,27(6):481-483.(in Chinese)
    [11] Zilwa S D,Zilliac G,Reinath M,et al.Time-resolved fuel-grain port diameter measurement in hybrid rockets[J].Journal of Propulsion and Power,2004,20(4):684-689.
    [12] Karabeyoglu A,Cantwell B J.Development of scalable space-time averaged regression rate expressions for hybrid rockets[J].Journal of Propulsion and Power,2007,23(4):737-747.
    [13] CAI Guobiao,ZENG Peng,LI Xintian,et al.Scale effect of fuel regression rate in hybrid rocket motor[J].Aerospace Science and Technology,2013,24(1):141-146.
    [14] 朱浩,蔡国飙.不同药型固液火箭发动机性能特点[J].航空动力学报,2011,26(10):2346-2351. ZHU Hao,CAI Guobiao.Performance characteristics of hybrid rocket motors with different grain types[J].Journal of Aerospace Power,2011,26(10):2346-2351.(in Chinese)
    [15] 朱浩,孔德帅,蔡国飙.泵压式固液火箭发动机系统仿真与优化设计[J].航空动力学报,2012,27(9):2128-2133. ZHU Hao,KONG Deshuai,CAI Guobiao.System simulation and optimal design of hybrid rocket motor with pump feed system[J].Journal of Aerospace Power,2012,27(9):2128-2133.(in Chinese)
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出版历程
  • 收稿日期:  2012-10-18
  • 刊出日期:  2013-04-28

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