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滑翔增程弹滑翔弹道设计
引用本文:史金光,王中原,曹小兵,刘巍,杨凯. 滑翔增程弹滑翔弹道设计[J]. 南京理工大学学报(自然科学版), 2007, 31(2): 147-150,183
作者姓名:史金光  王中原  曹小兵  刘巍  杨凯
作者单位:南京理工大学,动力工程学院,江苏,南京,210094;北京陆军航空兵学院,航空军械教研室,北京,101116;安徽军工集团控股有限公司科技发展部,安徽,合肥,230022
摘    要:在滑翔段上采用法向加速度等于零和升阻比最大两种方式进行滑翔弹道设计,导出俯仰舵偏角和平衡攻角的表达式,得到滑翔射程的一般关系式,分析了决定制导炮弹射程的主要因素.仿真结果表明,采用这两种方式设计的滑翔弹道各有特点,在工程实现中可以根据不同的使用要求和实际情况进行选择.

关 键 词:滑翔增程弹  舵偏角  平衡攻角  滑翔弹道
文章编号:1005-9830(2007)02-0147-04
收稿时间:2005-09-28
修稿时间:2006-12-27

Design of Glide Trajectory for Glide Range-extended Projectile
SHI Jin-guang,WANG Zhong-yuan,CAO Xiao-bing,LIU Wei,YANG Kai. Design of Glide Trajectory for Glide Range-extended Projectile[J]. Journal of Nanjing University of Science and Technology(Nature Science), 2007, 31(2): 147-150,183
Authors:SHI Jin-guang  WANG Zhong-yuan  CAO Xiao-bing  LIU Wei  YANG Kai
Abstract:The design of glide trajectories is made by using two methods of normal acceleration equal to zero and keeping the biggest lift-drag ratio in glide flight. The formula of lift canard rotating angles and balanceable attack angles are gained. The general expression of glide range is established. The main factors affecting the range of guided projectile are analyzed. The simulation results show that the glide trajectories designed by the two methods have their own characteristics. Every method can be chosen according to the different demands and the actual instances. The methods provide references for the project design of the glide range-extended projectile.
Keywords:glide range-extended projectile   canard rotating angle   balanceable attack angles   glide trajectories
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