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Strut and wall interference on jet-induced ground effects of a STOVL aircraft in hover

机译:支杆和壁面干扰对STOVL飞机悬停时喷射引起的地面影响

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摘要

A small scale ground effect test rig was used to study the ground plane flow field generated by a STOVL aircraft in hover. The objective of the research was to support NASA-Ames Research Center planning for the Large Scale Powered Model (LSPM) test for the ARPA-sponsored ASTOVL program. Specifically, small scale oil flow visualization studies were conducted to make a relative assessment of the aerodynamic interference of a proposed strut configuration and a wall configuration on the ground plane stagnation line. A simplified flat plate model representative of a generic jet-powered STOVL aircraft was used to simulate the LSPM. Cold air jets were used to simulate both the lift fan and the twin rear engines. Nozzle Pressure Ratios were used that closely represented those used on the LSPM tests. The flow visualization data clearly identified a shift in the stagnation line location for both the strut and the wall configuration. Considering the experimental uncertainty, it was concluded that either the strut configuration or the wall configuration caused only a minor aerodynamic interference. Distribution
机译:使用小型地面效应试验台来研究由STOVL飞机悬停产生的地面流场。研究的目的是支持NASA-Ames研究中心为ARPA赞助的ASTOVL计划进行大规模动力模型(LSPM)测试的计划。具体而言,进行了小规模油流可视化研究,以对地平面停滞线上的拟议支撑构造和壁构造的空气动力干扰进行相对评估。代表通用喷气动力STOVL飞机的简化平板模型用于模拟LSPM。冷空气喷嘴被用来模拟升降风扇和双后置发动机。使用的喷嘴压力比与LSPM测试中使用的喷嘴压力比非常接近。流动可视化数据清楚地确定了支杆和墙体构造的停滞线位​​置的变化。考虑到实验的不确定性,可以得出结论,无论是支柱结构还是壁结构,都仅造成较小的空气动力干扰。分配

著录项

  • 作者

    Kristy Michael H.;

  • 作者单位
  • 年度 1995
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  • 原文格式 PDF
  • 正文语种 en_US
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