弹道与气动力技术

具有瓦片翼的旋转子弹气动特性数值研究

  • 赵养正 ,
  • 吕鸿鹰 ,
  • 向玉伟
展开
  • 中国兵器工业第203研究所,西安 710065

赵养正(1965-),男,陕西蓝田人,高级工程师,硕士,研究方向:弹箭空气动力学与实验流体力学。

收稿日期: 2015-11-03

  网络出版日期: 2025-05-30

The Aerodynamic Performance Simulation of a Spinning Projectile with Tile Wings

  • ZHAO Yangzheng ,
  • LYU Hongying ,
  • XIANG Yuwei
Expand
  • No. 203 Research Institute of China Ordnance Inductries, Xi'an 710065, China

Received date: 2015-11-03

  Online published: 2025-05-30

摘要

为了预估具有瓦片翼的旋转子弹气动特性,文中采用求解准定常流场的方法,对其进行数值模拟,结果表明:不旋转状态下数值模拟的结果与实验值一致性较好,高阻力、低升力的特点与常规弹箭正好相反,但是法向力特性与常规弹箭一致;旋转状态下低转速时法向力和静态参数类似,但高转速时法向力出现了反号,转速对俯仰力矩的影响也不同;提出旋转状态的气动参数m不能判定静稳定性,并采用火箭外弹道学对导弹稳定性的判定准则对旋转子弹动稳定性进行了分析。

本文引用格式

赵养正 , 吕鸿鹰 , 向玉伟 . 具有瓦片翼的旋转子弹气动特性数值研究[J]. 弹箭与制导学报, 2016 , 36(4) : 93 -97 . DOI: 10.15892/j.cnki.djzdxb.2016.04.025

Abstract

To predict aerodynamic performance of a spinning projectile, quasi-stable flow simulations were used in the paper. The results show the calculation data are in good agreement with the experimental data in no-rolling frame. Its larger drag and lower lift are contrary to counterparts of traditional missiles, but the normal force acts consistently with traditional missiles. In the rolling frame, the normal force vector at lower rotating speed is opposite to that at the higher rotating speed. Rotational motion has different effect on pitch moment. It is not proved that the dynamic stability of the spinning projectile could be judged by rotational aerodynamic data (m). According to stability conditions on rocket external ballistics, dynamic stability of the spinning projectile was analyzed.

参考文献

[1]
赵养正, 蒋胜矩, 党明利,等. 旋转弹体及减旋片滚转阻尼数值模拟[J]. 兵工学报, 2015, 36 (7): 1176- 1180.
[2]
丁则胜, 刘亚飞, 徐琴,等. 弹体及减旋片滚转阻尼实验研究. 弹道学报, 2001, 13 (1): 62- 65.
[3]
邓帆, 陈少松, 陶钢. 带栅格翼导弹超声速阶段滚转阻尼导数的数值研究[J]. 空气动力学学报, 2012, 30 (2): 151- 156.
[4]
MACHAEL A P, LAWRENCE LG. steady-state computation of constant rotational rate dynamic stability derivatives: ΑΙΑΑ 2000-4321[R]. 2000.
[5]
DESPIRITO J, SILTON SI, WEINACHT P. Navier-Stokes predictions of dynamic stability derivatives-evaluation of steady-state methods: Maryland, USA: ARL-TR-4605[R]. 2008.
[6]
金华, 戴金海, 吴蓓蓓. 一种异形卷弧翼弹气动特性的数值模拟[J]. 弹箭与制导学报, 2006, 26 (3): 168- 171.
[7]
吴甲生. 雷娟棉. 制导兵器气动布局与气动特性[M]. 北京: 国防工业出版社, 2008: 299- 306.
[8]
MURPHY Charles H. Free flight motion of symmetric missiles: BRL Report No. 1216[R]. 1963.
文章导航

/