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相近弹形气动参数的确定方法
引用本文:林德福,祁载康,宋锦武.相近弹形气动参数的确定方法[J].北京理工大学学报,2006,26(11):941-944.
作者姓名:林德福  祁载康  宋锦武
作者单位:1. 北京理工大学,机电工程学院,北京,100081
2. 总装炮兵防空兵技术研究所,北京,100080
摘    要:提出由已知一种制导炮弹(Ⅰ型)气动特性(利用气动仿真对比计算与飞行对比试验方法)确定另一种气动外形相近的制导炮弹(Ⅱ型)的气动特性的方法.利用Jameson有限体积法求解空间流场的欧拉方程,采用笛卡尔网格技术分别对2种气动外形进行了气动力对比仿真计算.根据对比飞行试验数据对2种弹落点参数、雷达径向速度进行气动参数辨识.结果表明,仿真计算结果与根据落点参数及雷达径向速度辨识结果基本一致.该方法为根据已知气动外形准确确定另一种相近气动外形气动参数提供了一种途径.

关 键 词:制导炮弹  阻力系数  参数辨识  笛卡尔计算网格  气动参数辨识  试验方法  Configuration  Aerodynamic  Parameters  形准  速度辨识  径向速度  结果  雷达  点参数  试验数据  仿真计算  气动力  气动外形  网格技术  笛卡尔  欧拉方程  空间流场  求解  有限体积法
文章编号:1001-0645(2006)11-0941-04
收稿时间:2006/5/25 0:00:00
修稿时间:2006年5月25日

Method of Determining Aerodynamic Parameters of Guided Projectiles Having Analogous Configuration
LIN De-fu,QI Zai-kang and SONG Jin-wu.Method of Determining Aerodynamic Parameters of Guided Projectiles Having Analogous Configuration[J].Journal of Beijing Institute of Technology(Natural Science Edition),2006,26(11):941-944.
Authors:LIN De-fu  QI Zai-kang and SONG Jin-wu
Institution:School of Mechatronic Engineering,Beijing Institute of Technology,Beijing 100081,China;School of Mechatronic Engineering,Beijing Institute of Technology,Beijing 100081,China;Artillery Research Institute PLA Corps of Engineers,Beijing 100080,China
Abstract:Puts forward a method to get the aerodynamic parameters of new types of guided projectiles based on a known type with analogous configuration(by means of comparing calculation and flight tests).Jameson finite volume method is applied to solve the flow field of Euler sets of equations.An equally spaced Cartesian mesh structure is adopted to do the aerodynamic calculation.Both the aerodynamic identification technology and the match calculation method are used to calculate the drag coefficient of the type II guided projectile according to the comparison flight test.The result shows that different methods can lead to the same conclusion.The method can be used in the development of a series of guided projectiles.
Keywords:guided projectile  drag coefficient  parameter identification  Cartesian mesh structure  
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