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低阻增程弹风洞实验研究 被引量:2

WIND TUNNEL EXPERIMENTAL INVESTIGATION OF LOW DRAG EXTENDED RANGE PROJECTILES
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摘要 本文介绍了低阻增程弹(俗称枣核弹)的外形特点及旋转弹的风洞实验技术。分析了“枣核弹”的阻力特性及Magnus特性。指出采用枣核形设计及底排技术是两种有效的减阻增程措施,定心块有降低Magnus效应的作用,有利于提高精度。 This paper introduces the configuration features of low drag extended range projecti1es ,and also the wind tunnel experimental technique of spinning pro ject i les. The paper also analyses drag characteristics and Magnus characteristics of low drag extended projectiles. It is demonstrated that low drag configuration design and the base bleed technique are two effective way.s for reducing drag and extending the range. The bourrlet nubs have the role of reducing the Magnus effect and increasing precision.
出处 《北京理工大学学报》 EI CAS CSCD 1989年第2期29-34,共6页 Transactions of Beijing Institute of Technology
关键词 风洞试验 低阻增程弹 aerodynamics, drag, drag reduction, magnus effect , wind tunnel tests/low drag extended projectile, spinning projectile.
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同被引文献21

  • 1李惠芝,成楚之.旋转导弹的气动布局[J].战术导弹技术,1989(3):4-10. 被引量:8
  • 2范洁川,于涛.建造中的我国低速增压风洞[J].实验流体力学,2005,19(3):1-6. 被引量:9
  • 3王勋年.低速风洞实验[M].北京:国防工业出版社,2002.
  • 4Landers M G,Hall L H.Deflectable nose and canard-controls for a fin-stabilized projectile at super-sonic and sypersonic speeds[R].AIAA-2003-3805,2003.
  • 5Meurnier M.Viscous CFD analysis of a deflected nose axisymmetric projectile at high speeds[D].Cranfield:Cranfield University,2005.
  • 6Shoesmith B,Birch T.CFD analysis of a supersonic projectile with deflectable nose control[R].AIAA-2006-3200,2006.
  • 7Hathaway W,Winchenbach G,Krieger J.Free-flighttests of 10-degree cones with a one degree articulation angle[R].AIAA-1999-0434,1999.
  • 8Wayne V S,Robert J A,Williams D P.Articulated nosemissile control actuation system:united states,6364248B1[P].2002-04-02.
  • 9Berry R P,Lawless D F,Cayson S C,et al.Magnetostrictive missile guidance system:united states,6467722[P].2002-10-02.
  • 10Landers M G,Hall L H.Deflectable nose and canard-controls for a fin-stabilized projectile at super-sonic and hypersonic speeds[R].AIAA-2003-3805.

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