[1] 孙维申. 固体火箭发动机不稳定燃烧[M]. 北京:北京工业学院出版社, 1987.
[2] Price E W. Solid Rocket Combustion Instability—An American Historical Account, Nonsteady Burning and Combustion Stability of Solid Propellants[J]. AIAA Journal, 1992, (143): 1-16.
[3] Blomshield F S. Historical Perspective of Combustion Instability in Motors: Case Studies[R]. AIAA 2001-3875.
[4] Crocco L, Sirignano W A. Behavior of Supercritical Nozzles Under Three-Dimensional Oscillatory Conditions[R]. France: Advisory Group for Aerospace Research and Development Neuilly-Sur-Seine, 1967.
[5] Crocco L, Cheng S I. Theory of Combustion Instability in Liquid Propellant Rocket Motors[R]. Brussels: North Atlantic Treaty Organization, 1956.
[6] Zinn B T. Use of Relaxation Technique in Nozzle Wave Propagation Problems[R]. AIAA 73-1011
[7] Zinn BT. Longitudinal Mode Acoustic Losses in Short Nozzles[J]. Journal of Sound and Vibration, 1972, 22(1): 93-105.
[8] Zinn B T. Nozzle Damping in Solid Rocket Instabilities[J]. AIAA Journal, 1973, 11(11): 1492-1497.
[9] Janardan B A, Zinn B T. Rocket Nozzle Damping Characteristics Measured Using Different Experimental Techniques [J]. AIAA Journal, 1977, 15(3): 442-444.
[10] Bell W A, Daniel B R, Zinn B T. Experimental and Theoretical Determination of the Admittances of a Family of Nozzles Subjected to Axial Instabilities[J]. Journal of Sound and Vibration, 1973, 30(2): 179-190.
[11] 苏万兴, 李军伟, 张峤, 等. 涡脱位置及温度对涡声效应压力振荡影响[J]. 推进技术, 2013, 34(2):251-256. (SU Wan-xing, LI Jun-wei, ZHANG Qiao, et al. Influence of Thermal Inhibitor Position and on Vortex-Shedding-Driven Pressure Oscillations[J]. Journal of Propulsion Technology, 2013, 34(2): 251-256.)
[12] 刘佩进, 杨尚荣, 陈晓龙. 介质温度和工作压强对发动机燃烧室中压强振荡的影响[J]. 推进技术, 2012, 33(6): 902-906. (LIU Pei-jin, YANG Shang-rong, CHEN Xiao-long. Effects of Temperature and Pressure on Pressure Oscillation in the Chamber of Solid Rocket Motor [J]. Journal of Propulsion Technology, 2012, 33(6): 902-906.)
[13] Su W X, Wang N F, Li J W, et al. Numerical Research on the Nozzle Damping Effect by a Wave Attenuation Method[J]. Defence Technology, 2013, 9(3): 162-166.
[14] Javed A, Chakraborty D. Damping Coefficient Prediction of Solid Rocket Motor Nozzle Using Computational Fluid Dynamics [J]. Journal of Propulsion and Power, 2013, 30(1): 19-23.
[15] Buffum F G, Dehority G L, Slates R O, et al. Acoustic Attenuation Experiments on Subscale, Cold-Flow Rocket Motors[J]. AIAA Journal, 1967, 5(2): 272-280.
[16] Su W X, Wang N F, Li J W, et al. Improved Method of Measuring Pressure Coupled Response for Composite Solid Propellants[J]. Journal of Sound and Vibration, 2014, 333(2): 2226-2240.
[17] French J C. Nozzle Acoustic Dynamics and Stability Modeling[J]. Journal of Propulsion and Power, 2011, 27(6): 1266-1275.(编辑:梅瑛) * 收稿日期:2014-12-22;修订日期:2015-02-05。作者简介:孙兵兵,男,博士生,研究领域为固体火箭发动机燃烧不稳定。E-mail: t19891089@126.com
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