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首页> 外文期刊>Unmanned Systems >Slipstream Deformation of a Propeller-Wing Combination Applied for Convertible UAVs in Hover Condition
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Slipstream Deformation of a Propeller-Wing Combination Applied for Convertible UAVs in Hover Condition

机译:螺旋桨 - 翼组合的滑翔流变形应用于悬停条件下的可转换无人机

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摘要

Convertible unmanned aerial vehicle (UAV) combines advantages of convenient autonomous launch/recovery and efficient long range cruise performance. Successful design of this new type of aircraft relies heavily on good understanding of powered lift generated through propeller-wing interactions, where the velocity distribution within propeller slipstream is critical to estimate aerodynamic forces during hover condition. The present research studied a propeller-wing combination with a plain flap. A 5-hole probe measurement system was built to construct three-dimensional (3D) velocity field at a survey plane after wing trailing edge. The study has found that significant deformation of propeller slipstream was present in the form of opposite transverse displacement on extrados and intrados. The deformation could be enhanced by flap deflections. Velocity differences caused by the slipstream deformation could imply local variation of lift distribution compared to predictions from conventional assumptions of cylindrical slipstream. An analytical method was developed to reasonably estimate the position of deformed slipstream centreline. The research underlined that the mutual aspect of propeller-wing interaction could be critical for low-speed aerodynamic design.
机译:可转换无人驾驶空中车辆(UAV)结合了方便的自主发射/恢复和高效的远程游轮性能的优势。这种新型飞机的成功设计严重依赖于通过螺栓相互作用产生的动力升力的良好理解,其中螺旋桨滑流内的速度分布对于估计悬停条件期间的空气动力至关重要。本研究研究了螺旋桨翼组合与普通襟翼。建立了一个5孔探针测量系统,在翼后边缘后调查平面构建三维(3D)速度场。该研究发现,螺旋桨滑流的显着变形是以相反的横向位移的形式存在于extrados和incrados上。通过翻转偏转可以增强变形。与来自圆柱形滑浪冲流的传统假设的预测相比,由滑流变形引起的速度差异暗示升力分布的局部变化。开发了一种分析方法,以合理地估计变形滑流中心线的位置。该研究强调,螺旋桨 - 翼交互的相互方面对于低速空气动力学设计来说至关重要。

著录项

  • 来源
    《Unmanned Systems》 |2020年第4期|295-308|共14页
  • 作者单位

    ISAE-Supaero Universite de Toulouse 10 Avenue Edouard Belin Toulouse 31400 France ENAC Universite de Toulouse 7 Avenue Edouard Belin Toulouse 31055 France Delair 676 Rue Max Planck Labege 31670 France;

    ENAC Universite de Toulouse 7 Avenue Edouard Belin Toulouse 31055 France;

    ISAE-Supaero Universite de Toulouse 10 Avenue Edouard Belin Toulouse 31400 France;

    ISAE-Supaero Universite de Toulouse 10 Avenue Edouard Belin Toulouse 31400 France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Convertible UAV; aerodynamics; propeller-wing interaction;

    机译:可兑换无人机;空气动力学;螺旋桨翼交互;

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