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Development of an analytical model for pitch link loads of bearingless main rotors.

机译:开发无轴承主转子的节距连杆载荷分析模型。

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摘要

An aeroelastic rotor model for bearingless main rotors is developed. The primary purpose of the model is to predict axial pitch link loads as a function of flight condition and pilot stick positions. The rotor is represented by five principal parts: the blade, the cuff, the yoke, the lag damper and the ptich link. These elements are synthesized into a bearingless rotor model using a multibody dynamics formulation. Symbolic computer algebra scripts using MAPLE are used to derive closed-form analytical expressions for inertial and stiffness analyses and for constraint modeling.;Rotor aerodynamics is based on quasi-static blade element theory, with semi-empirical models for inflow distribution and dynamic stall. The aerodynamic and inertial models are limited to steady level flight cases. The multibody formulation and the time-domain solution methodology, however, are general enough to consider transient analyses associated with maneuvering and nontrimmed flight conditions.;Correlation of the analytically generated pitch link loads against measured flight test data is presented to validate the formulation.
机译:建立了无轴承主转子的气动弹性转子模型。该模型的主要目的是根据飞行条件和操纵杆位置预测轴向俯仰连杆载荷。转子由五个主要部分表示:叶片,袖带,轭,滞后阻尼器和ptich连杆。使用多体动力学公式将这些元素合成为无轴承转子模型。使用MAPLE的符号计算机代数脚本可用于得出用于惯性和刚度分析以及约束建模的闭合形式的解析表达式。转子空气动力学基于准静态叶片单元理论,具有用于流入量分布和动态失速的半经验模型。空气动力学和惯性模型仅限于稳定水平的飞行情况。然而,多体公式和时域求解方法足够通用,可以考虑与机动和未修剪飞行条件相关的瞬态分析。提出了解析生成的俯仰连杆载荷与测得的飞行测试数据的相关性以验证公式。

著录项

  • 作者

    Russell, Gregory T.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;
  • 关键词

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