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TILTROTOR AUTOROTATION CHARACTERISTICS USING COMPREHENSIVE ANALYSIS

机译:基于综合分析的摆轮自动旋转特性

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The purpose of this investigation was to determine the sensitivity of tiltrotor autorotation characteristics to proprotor design variations. The investigation had two phases: validate CAMRAD II as a tool to simulate low power, descending flight; and evaluate the sensitivity of autorotation characteristics to design variations. Wind tunnel results from four helicopter rotors in axial descent and the XV-15 proprotor in forward flight descent were simulated. The simulation accuracy was evaluated for free wake modeling parameters such as wake age and trailing vortex roll up. The primary tiltrotor autorotation characteristics were identified as: proprotor rotation speed droop, steady rate of descent, and rate of descent reduction during collective flare. The sensitivity of these primary characteristics to design variations (blade twist, taper ratio, number of blades, solidity, and rotor speed) was investigated. Analytical results for the autorotation condition showed that the geometry of the free wake is sensitive to small changes in thrust and trailing vortex rollup. However, proprotor thrust and power in autorotation conditions are not sensitive to free wake age or vortex core radius. It was found that the XV-15 proprotor requires additional inertia to obtain a 1000 fpm descent rate during autorotation flare. Also, increasing the blade solidity and allowing 110% rotor speed were shown to improve autorotation characteristics.
机译:这项研究的目的是确定倾斜转子的自转特性对proprotor设计变化的敏感性。该调查分为两个阶段:验证CAMRAD II作为模拟低功率下降飞行的工具;并评估自动旋转特性对设计变化的敏感性。模拟了四个直升机旋翼在轴向下降时的风洞结果,以及XV-15 proprotor在前向飞行中的情况。针对自由尾迹建模参数(例如尾迹年龄和尾随涡旋累积)评估了仿真精度。倾转旋翼的主要自转特性被确定为:proprotor旋转速度下降,稳定下降率和集体耀斑期间下降率下降。研究了这些主要特征对设计变化(叶片扭曲,锥度比,叶片数量,坚固性和转子速度)的敏感性。对自动旋转条件的分析结果表明,自由尾流的几何形状对推力和尾随涡流的微小变化敏感。但是,proprotor在自动旋转条件下的推力和功率对自由尾流年龄或涡旋芯半径不敏感。发现XV-15 proprotor在自动旋转耀斑期间需要额外的惯性才能获得1000 fpm的下降率。同样,增加叶片的坚固性并允许110%的转子转速也可以改善自转特性。

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