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Hypersonic Pressure, Skin-Friction, and Heat Transfer Distributions on Space Vehicles: Three-Dimensional Bodies

机译:航天器上的超音速压力,摩擦学和热传递分布:三维物体

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摘要

A new innovative engineering method is developed to predict surface quantity (pressure, skin-friction, and heat transfer) distributions on three-dimensional bodies, such as blunt-nosed bodies with circular and noncircular cross sections and bluff-nosed bodies of complex configuration. A key feature of the current procedure is to base three-dimensional effects on geometrical quantities associated with the three-dimensional body rather than the fluid mechanics of the flow on the three-dimensional body. The geometrical quantity is characteristic length associated with distinguishing features of the three-dimensional body. With the use of the stagnation Reynolds number with the characteristic length so defined in the analytical equations for each of the surface quantities, the surface quantities on three-dimensional bodies of simple and complex configurations are evaluated. The results from the engineering method on symmetrical and asymmetrical stagnation points, sphere-cones, elliptic paraboloids, and an aeroassist flight experiment vehicle, consisting of an ellipsoidal nose followed by an elliptic cone and a toroidal skirt, under hypersonic, rarefied and free molecular flow conditions agreed with available theoretical and experimental data with a reasonable accuracy. Wherever possible, emphasis is placed to provide a plausible explanation of three-dimensional fluid mechanical effects on the surface quantities of the given body.
机译:开发了一种新的创新工程方法来预测三维物体上的表面量(压力,皮肤摩擦和热传递)分布,例如具有圆形和非圆形横截面的钝头物体以及复杂构造的钝头物体。当前过程的一个关键特征是将三维效果建立在与三维物体关联的几何量上,而不是基于三维物体上的流动的流体力学。几何量是与三维物体的不同特征相关的特征长度。通过使用滞止雷诺数和特征长度在分析方程式中为每个表面量定义的停滞雷诺数,可以评估简单和复杂结构的三维物体上的表面量。在高超声速,稀疏和自由分子流下,对对称和不对称停滞点,球锥,椭圆抛物面和航空辅助飞行实验车辆的工程方法的结果,该飞行实验飞行器由椭圆形的鼻子,椭圆形的圆锥体和环形裙边组成条件与可用的理论和实验数据相符,并且具有合理的准确性。在任何可能的地方,都将重点放在对给定物体的表面量的三维流体机械作用的合理解释上。

著录项

  • 来源
    《AIAA Journal》 |2004年第10期|p.2070-2081|共12页
  • 作者

    Amolak C. Jain; James R. Hayes;

  • 作者单位

    Science and Technology Corporation, Hampton, Virginia 23666;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天;航空;
  • 关键词

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