[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]
相关技术

喷咀轴向位置对复合增程弹气动特性的影响

  • 谭献忠 ,
  • 丁则胜 ,
  • 陈少松 ,
  • 徐琴
展开
  • 南京理工大学能源与动力工程学院,南京210094

谭献忠(1967-),男,湖南安化人,研究方向:流体力学、风洞测控技术。

收稿日期: 2012-11-12

  网络出版日期: 2025-05-26

The Effect of Axial Position of Nozzle on Aerodynamic Characteristics of Hybrid Extended Range Projectile

  • TAN Xianzhong ,
  • DING Zesheng ,
  • CHEN Shaosong ,
  • XU Qin
Expand
  • School of Energy and Power Engineering, NUST, Nanjing 210094, China

Received date: 2012-11-12

  Online published: 2025-05-26

摘要

底排-火箭复合增程弹分置式布局,即底排装置设置在弹底,火箭助推装置设置在弹丸前端的弧形段部分,是一种特别适合于子母弹的先进布局方式。文中对火箭喷咀轴向位置的变化对分置式结构底排-火箭复合增程弹气动特性影响进行了风洞实验研究。实验Ma数为2.0和3.0,迎角为0°~6°,喷流压力比为0~189.6,喷流介质为冷空气,喷咀倾角30°,喷咀数量4个,喷咀轴向位置有三种,分别位于弹丸肩部、头部弧形段和圆柱部。实验研究结果表明:喷流后喷咀轴向位置位于弹丸肩部时弹丸阻力系数和俯仰力矩系数下降幅度最大,而升力系数及压心系数增加幅度最大,底阻增加幅度最小,是最有利于飞行的一种布局方式。

本文引用格式

谭献忠 , 丁则胜 , 陈少松 , 徐琴 . 喷咀轴向位置对复合增程弹气动特性的影响[J]. 弹箭与制导学报, 2013 , 33(4) : 142 -145 . DOI: 10.15892/j.cnki.djzdxb.2013.04.047

Abstract

The hybrid base-bleed-rocket extended range projectile is an advanced layout for cluster bomb when it adopts independent layout that the base bleed device is installed on the projectile base and the rocket roll booster is installed on the ogive of projectile head. This type of layout fits cluster bomb in particular. In this paper, how the axial position of the rocket nozzle effects the aerodynamic characteristics of hybrid base-bleed-rocket extended range projectile was investigated through wind tunnel test study. Experimental Mach numbers are 2.0 and 3.0 respectively, the angle of attack range ranges from 0 to +6 degrees, and jet pressure ratio range ranges from 0 to 189.6. The media of jet is cool air, and the inclined angle of nozzle is 30 degrees. The number of nozzle is four. There are three types of axial position of nozzle, which are respectively the projectile shoulder, the projectile arch and the cylinder section of projectile. Experimental results show that the decrease of the drag coefficient and the pitching moment coefficient are maximal, the increase of the lift coefficient and the pressure center coefficient are maximal, and the increase of the base drag coefficient is minimal, when the axial position of nozzle is the projectile shoulder. This type of layout is the most favorable one for flight.

[an error occurred while processing this directive]

参考文献

[1]
J Sahu Numerieal computations of an extended range pro-jeetile containing nose jets[C]// 15th International Sym-posium on Ballisties, 1995.
[2]
金浩, 曲家惠, 吕科. 某底排- 火箭复合增程弹再增程的分析与设计[J]. 四川兵工学报, 2011,32(10): 4–6.
[3]
金浩, 曲家惠, 岳明凯. 底排- 火箭复合增程弹相关特性分析[J]. 辽宁师专学报, 2010(2):83-84.
[4]
钟文超, 倪庆杰, 杨云川. 底排- 火箭复合增程弹的外弹道参数设计.沈阳理工大学学报, 2008,27(2):58-61.
[5]
周海清, 周俊祥. 底排-火箭复合增程弹外弹道参数匹配与分析[J].华北工学院学报, 2001,22(3):161- 164.
[6]
谢宗齐. 底排火箭复合增程弹增程装置的流场数值模拟[D].南京:南京理工大学,2002.
[7]
钱建平. 底排-火箭复合增程弹总体理论及其应用研究[D].南京:南京理工大学,2002.
[8]
丁则胜, 陈少松, 曹顶贵,等. 头部喷流对弹丸气动性能的影响[J].弹道学报,2003,15(13): 50–54.
[9]
丁则胜, 陈少松, 谭献忠,等. 弹丸前体喷流风洞实验[J].流体力学实验与测量,2004,18(3): 19 – 22.
[10]
谭献忠, 陈少松, 丁则胜,等. 弹丸头部喷流的风洞实验测试技术.航空计测技术,2004,24(5): 23-31.
[11]
Spaid FW, Cassel LA. Aerodynamic interference in-duced by reaction controls, AGARD - AG 173[R]. 1973.
[12]
Champigny P, Lacau R G. Lateral jet control for tacticalmissiles, N95144481 [R]. 1994.
文章导航

/

[an error occurred while processing this directive]