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Contributions to the Characterization and Mitigation of Rotorcraft Brownout.

机译:对旋翼飞机停电的表征和缓解做出的贡献。

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摘要

Rotorcraft brownout, the condition in which the flow field of a rotorcraft mobilizes sediment from the ground to generate a cloud that obscures the pilot's field of view, continues to be a significant hazard to civil and military rotorcraft operations. This dissertation presents methodologies for: (i) the systematic mitigation of rotorcraft brownout through operational and design strategies and (ii) the quantitative characterization of the visual degradation caused by a brownout cloud.;In Part I of the dissertation, brownout mitigation strategies are developed through simulation-based brownout studies that are mathematically formulated within a numerical optimization framework. Two optimization studies are presented. The first study involves the determination of approach-to-landing maneuvers that result in reduced brownout severity. The second study presents a potential methodology for the design of helicopter rotors with improved brownout characteristics. The results of both studies indicate that the fundamental mechanisms underlying brownout mitigation are aerodynamic in nature, and the evolution of a ground vortex ahead of the rotor disk is seen to be a key element in the development of a brownout cloud.;In Part II of the dissertation, brownout cloud characterizations are based upon the Modulation Transfer Function (MTF), a metric commonly used in the optics community for the characterization of imaging systems. The use of the MTF in experimentation is examined first, and the application of MTF calculation and interpretation methods to actual flight test data is described. The potential for predicting the MTF from numerical simulations is examined second, and an initial methodology is presented for the prediction of the MTF of a brownout cloud. Results from the experimental and analytical studies rigorously quantify the intuitively-known facts that the visual degradation caused by brownout is a space and time-dependent phenomenon, and that high spatial frequency features, i.e., fine-grained detail, are obscured before low spatial frequency features, i.e., large objects. As such, the MTF is a metric that is amenable to Handling Qualities (HQ) analyses.
机译:旋翼航空器电力不足的情况仍然是对民用和军用旋翼航空器运行的重大危害,旋翼航空器的流场会从地面上移动沉积物以产生使飞行员的视线模糊的云。本论文提出了以下方法:(i)通过运行和设计策略来系统地减轻旋翼飞机的电力不足;(ii)由电力不足云造成的视觉退化的定量表征。;在论文的第一部分中,开发了电力不足缓解策略。通过在数值优化框架内以数学方式制定的基于仿真的掉电研究。提出了两个优化研究。第一项研究涉及确定进近着陆动作的方法,该动作会导致掉电严重性降低。第二项研究提出了一种具有改进的掉电特性的直升机旋翼设计方法。两项研究的结果都表明,缓解电力不足的根本机制本质上是空气动力学,在转子盘之前地面涡流的演变被认为是电力不足云发展的关键因素。在本文中,掉电云的表征基于调制传递函数(MTF),该函数通常在光学界用于表征成像系统。首先检查了MTF在实验中的使用,并描述了MTF计算和解释方法在实际飞行测试数据中的应用。其次,研究了通过数值模拟预测MTF的潜力,并提出了一种用于预测掉电云的MTF的初始方法。实验和分析研究的结果严格量化了直觉上已知的事实,即由电力不足引起的视觉退化是一种与时间和时间有关的现象,并且在低空间频率之前就掩盖了高空间频率特征(即细粒度的细节)特征,即大物体。这样,MTF是适合处理质量(HQ)分析的度量。

著录项

  • 作者

    Tritschler, John Kirwin.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 435 p.
  • 总页数 435
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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