[an error occurred while processing this directive] [an error occurred while processing this directive] [an error occurred while processing this directive]
[an error occurred while processing this directive]

基于无人机的小型封锁弹药毁伤航母仿真研究

  • 王为奎 ,
  • 陈丽 ,
  • 吴华 ,
  • 戴革林 ,
  • 齐燕军
展开
  • 1 空军勤务学院,江苏徐州 221000
    2 中国矿业大学深部岩土力学与地下工程国家重点实验室,江苏徐州 221116

王为奎(1962-),男,江苏丰县人,教授,研究生导师,研究方向:导弹制导与控制、导弹战斗部与毁伤技术。

收稿日期: 2017-04-25

  网络出版日期: 2025-05-28

基金资助

国家自然科学基金(51504247,51608520)

Simulation and Study on Aircraft Carrier Damaged by SmallBlockade Ammunition Based on UAV

  • WANG Weikui ,
  • CHEN Li ,
  • WU Hua ,
  • DAI Gelin ,
  • QI Yanjun
Expand
  • 1 Air Force Logistics University, Jiangsu Xuzhou 221000, China
    2 State Key Laboratory for Geomechanics andDeep Underground Engineering, China University of Mining and Technology, Jiangsu Xuzhou 221116, China

Received date: 2017-04-25

  Online published: 2025-05-28

摘要

基于反航母作战面临的巨大困难,提出一种基于无人机的小型封锁弹药毁伤航母作战模式,建立了BAP100小型封锁弹药仿真模型。运用Autodyn对无人机小型封锁弹药毁伤(侵爆)航母进行仿真,仿真结果显示:弹头附近出现一个深度约57mm左右小坑,无法将航母甲板击穿,甲板表面很大范围内出现高低不平毛刺现象。单枚弹药对航母的毁伤不是致命的,但这种小坑与毛刺能够限制航母的载机起飞、降落,对于反航母作战将具有实际意义。

本文引用格式

王为奎 , 陈丽 , 吴华 , 戴革林 , 齐燕军 . 基于无人机的小型封锁弹药毁伤航母仿真研究[J]. 弹箭与制导学报, 2018 , 38(1) : 101 -104 . DOI: 10.15892/j.cnki.djzdxb.2018.01.024

Abstract

As the great difficulty of anti aircraft carrier, a small blockade ammunition damaged aircraft carrier war mode based on unmanned aerial vehicle (UAV) was proposed. The simulation model of BAP100 small blockade ammunition was established, and on the basis of Autodyn, the small blockade ammunition damage( penetration and expansion) aircraft carrier was simulated. The simulation results show that near the warhead, there is a small pit about 57 mm depth, which indicates that the warhead can not penetrate the deck of the carrier, and uneven burrs appear in a large range of deck surface. The damage of single ammunition to aircraft carrier is not fatal, but this small pit and burr can limit the takeoff and landing of the carrier, and it has practical significance for the anti-aircraft carrier combat.

[an error occurred while processing this directive]

参考文献

[1]
秦志龙, 王华, 王俊玲. 无人机反航母作战[J]. 现代军事, 2010 (6): 80-83.
[2]
黄长强. 无人机作战精确打击技术[M]. 北京: 国防工业出版社, 2011: 1-3.
[3]
周弘扬, 王为奎, 戴革林. 基于反航母的攻击无人机弹药配置方案设计[J]. 飞航导弹, 2015 (6): 73-75.
[4]
王华, 马宝华. 封锁机场武器系统的发展趋势分析[J]. 飞航导弹, 1999 (4): 25-28.
[5]
高长根, 李万金, 刘丽. ANSYS Workbench 14.5 建模与仿真从入门到精通[M]. 北京: 电子工业出版社, 2014: 30-37.
[6]
江增荣. Autodyn 分析技术在爆炸力学计算中应用[J]. 科技研究, 2007 (2): 15– 17.
[7]
王智慧, 纪伟, 侯圣英,等. AUTODYN 中接触算法对穿甲问题仿真结果影响[J]. 兵器材料科学与工程, 2014, 37(4): 8-11.
[8]
AUTODYN A. Interactive non-linear dynamic analysis soft-ware, version 12, user's manual[M]. [S.?l.]: SAS IPInc, 2001: 56-78.
[9]
GRUJICIC M, PANDURANGAN B, KOUDEIA KL, et al. A computational analysis of the ballistic performance oflight-weight hybrid composite armors[J]. Applied SurfaceScience, 2006, 253(2): 730-745.
[10]
QUAN X, GLEGG RA, COWLER MS, et al. Numericalsimulation of long rods impacting silicon carbide targets u-sing JH41 model[J]. International Journal of Impact En-gineering, 2006, 33(1-12): 634-644.
[11]
宁建国, 王成, 马天宝. 爆炸与冲击动力学[M]. 北京: 国防工业出版社, 2010: 315-316.
[12]
《爆炸及其应用》编写组. 爆炸及其应用(下)[M]. 北京: 国防工业出版社, 1979: 1-3.
文章导航

/

[an error occurred while processing this directive]