郭锡福.底部排气弹外弹道学[M].北京:国防工业出版社,1994: 1-8.GUO Xi-fu.The exterior ballistics of base bleed projectile[M].Beijing: Publishing Company of National Defence Industry,1994: 5-6.
[2]
陆春义, 周彦煌, 余永刚.高降压速率下复合底排药剂瞬变燃烧特性研究[J].含能材料,2007,15(6): 587-591.LU Chun-yi, ZHOU Yan-huang, YU Yong-gang.Combustion of composite base bleed charge under rapid depressurization[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2017,15(6): 587-591.
[3]
武智慧, 钱建平, 刘荣忠, 等.实际发射工况下底排药柱结构完整性的模拟计算[J].火炸药学报, 2014,37(3): 60-65.WU Zhi-hui, QIAN Jian-ping, LIU Rong-zhong, et al.Simulation calculation on structure integrity of base bleed grains in launching process[J].Chinese Journal of Explosives & Propellants, 2014,37(3): 60-65.
[4]
卓长飞, 武晓松, 封锋.超声速流动中底部排气减阻的数值研究[J].兵工学报, 2014,35(1): 18-26.ZHUO Chang-fei, WU Xiao-song, FENG Feng.Numerical research on drag reduction of base bleed in supersonic flow[J].Acta Armamentarii, 2014,35(1): 18-26.
[5]
丁则胜,罗荣,陈少松.底部燃烧减阻风洞实验技术研究[J].空气动力学报, 1993,11(2): 159-163.DING Ze-sheng, LUO Rong, CHEN Shao-song.A study of base burning experimental technique in wind tunnel[J].Acta Aerodynamica Sinica, 1993,11(2): 159-163.
[6]
陈少松, 丁则胜, 罗荣, 等.亚、跨声速底排减阻特性研究[J].流体力学实验与测量, 2000,14(4): 41-45.CHEN Shao-song, DING Ze-sheng, LUO Rong, et al.An investigation on characteristics of base drag reduction with base bleed in subsonic and transonic speeds[J].Experiments and Measurements in Fluid Mechanics, 2000,14(4): 41-45.
[7]
丁则胜, 陈少松, 刘亚飞, 等.底排尾迹流场实验研究[J].弹道学报, 2000,12(1): 43-47.DING Ze-sheng, CHEN Shao-song, LIU Ya-fei, et al.A Study of wake flow field of base bleed[J].Journal of Ballistics, 2000,12(1): 43-47.
[8]
丁则胜, 陈少松, 刘亚飞, 等.底排性能的环境压强效应[J].弹道学报,2002,14(1): 88-92.DING Ze-sheng, CHEN Shao-song, LIU Ya-fei, et al.Influence of ambient pressure on base bleed[J].Journal of Ballistics, 2002,14(1): 88-92.
[9]
Mathur T, Dutton J C.Base bleed experiments with a cylindrical afterbody in supersonic flow[R].AIAA95-0062,1995.
[10]
Mathur T, Dutton J C.Velocity and turbulence measurements in a supersonic base flow with mass bleed[R].AIAA 96-0456,1996.
[11]
Nietubica C J, Gibeling H J.Navier-stokes computations for a reacting,M864 base bleed projectile[R].AIAA 93-0504,1993.
[12]
Kaurinkoski P.Computation of the flow of thermally perfect gas past a supersonic projectile with base bleed[R].AIAA96-3451,1996.
[13]
Choi J Y.Numerical study of base bleed projectile with external combustion[R].AIAA 2005-4352,2005.
[14]
卓长飞, 武晓松, 封锋.超声速流动中底部排气形式对减阻性能的影响[J].航空学报, 2014,35(8): 2144-2155.ZHUO Chang-fei, WU Xiao-song, FENG Feng.Effect of base bleed type on drag reduction performance in supersonic flow[J].Acta Aeronautica et Astronautica Sinica, 2014,35(8): 2144-2155.
[15]
卓长飞, 封锋, 武晓松.超声速底部排气弹底部流场与气动特性研究[J].空气动力学学报, 2014,32(6): 783-790.ZHUO Chang-fei, WU Xiao-song, FENG Feng.Research on base bleed flow filed and aerodynamic characteristics of the supersonic base bleed projectile[J].Acta Aerodynamica Sinica, 2014,32(6): 783-790.
[16]
欧阳水吾, 谢中强, 徐春光.高温非平衡空气绕流[M].北京:国防工业出版社, 2001: 140-145.OUYANG Shui-wu, XIE Zhong-qiang, XU Chun-guang.High temperature air non-equilibrium flows[M].Beijing: Publishing Company of National Defence Industry, 2001: 140-145.