李留成.鱼雷制造技术[M].北京:国防工业出版社,2011. Li Liucheng. Torpedo manufacture technique[M]. Beijing:National Defense Industry Press, 2011.(in Chinese)
[2]
王新华,高洪林,穆连运,等.舰艇反鱼雷技术[J].舰船科学技术,2011,33(9):86-89. Wang Xinhua, Gao Honglin, Mu Lianyun, et al. Research on warship anti-torpedo technology[J]. Ship Science and Technology, 2011,33(9):86-89. (in Chinese)
[3]
刘锐,鲁中宝,王明洲.反鱼雷鱼雷战斗部对来袭鱼雷爆炸毁伤效应仿真[J].鱼雷技术,2012,20(5):375-379. Liu Rui, Lu Zhongbao, Wang Mingzhou. Simulation of explosive damage effect of ATT warhead on incoming torpedo[J]. Torpedo Technology, 2012,20(5):375-379. (in Chinese)
[4]
Ergin A. The response behavior of a submerged cylindrical shell using the doubly asymptotic approximation method(DAA)[J]. Computers and Structures, 1997,62(6):1025-1034.
[5]
Brett J M, Yiannakopolous G. A study of explosive effects in close proximity to a submerged cylinder[J]. International Journal of Impact Engineering, 2008,35(4):206-225.
[6]
李建, 荣吉利.水下爆炸圆柱壳塑性动态响应实验及数值计算[J]. 北京理工大学学报,2008,28(8):659-662. Li Jian, Rong Jili. Experimental and numerical investigations of dynamic response for cylindrical shell subjected to underwater explosion[J]. Transactions of Beijing Institute of Technology, 2008, 28(8):659-662. (in Chinese)
[7]
荣吉利,项大林,李健,等.含铝炸药水下爆炸特性研究[J].北京理工大学学报,2012,32(3):221-225. Rong Jili, Xiang Dalin, Li Jian, et al. Study on under water explosion character of aluminized explosive[J]. Transactions of Beijing Institute of Technology, 2012,32(3):221-225. (in Chinese)
[8]
Hung C F, Lin B J. Dynamical response of cylindrical shell structures subjected to underwater explosion[J]. Ocean Engineering, 2009,36(8):564-577.
[9]
袁建红,朱锡,张振华.水下爆炸作用下环肋加筋圆柱壳结构的弹塑性动力屈曲[J].爆炸与冲击,2012,32(6):585-591. Yuan Jianhong, Zhu Xi, Zhang Zhenhua. Dynamic bulking of aring-stiffened cylindrical shell subjected to underwater explosive loading[J]. Explosion and Shock Waves, 2012,32(6):585-591. (in Chinese)