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首页> 外文期刊>Journal of the American Helicopter Society >Stability and Control Analysis of the Slowed-Rotor Compound Helicopter Configuration
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Stability and Control Analysis of the Slowed-Rotor Compound Helicopter Configuration

机译:慢旋翼复合直升机构型的稳定性和控制分析

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摘要

Stability and control of rotors at high advance ratio are considered. Stability of teetering, articulated, and gimbaled hub types is considered with a simple flapping blade analysis. Rotor control in autorotation for teetering and articulated hub types is examined in more detail for a compound helicopter (rotor and fixed wing) using the comprehensive analysis CAMRAD Ⅱ. Autorotation is found to be possible at two distinct trim conditions with different sharing of lift between the rotor and wing. Stability predictions obtained using the analytical rigid flapping blade analysis and a rigid blade CAMRAD Ⅱ model compare favorably. For the flapping blade analysis, the teetering rotor is found to be the most stable hub type, showing no instabilities up to an advance ratio of 3 and a Lock number of 18. Analysis of the trim controls, lift, power, and blade flapping shows that for small positive collective pitch, trim can be maintained without excessive control input or flapping angles for both teetering and articulated rotors.
机译:考虑了高提前比的转子的稳定性和控制。通过简单的拍击叶片分析,可以考虑摇臂,铰接式和万向节式毂的稳定性。通过综合分析CAMRADⅡ,对复式直升飞机和铰接式枢纽类型的自转中的旋翼控制进行了更详细的研究。发现在两种不同的修整条件下,转子和机翼之间的升力分配不同,自动旋转是可能的。使用分析性刚性襟翼叶片分析和刚性叶片CAMRADⅡ模型获得的稳定性预测具有可比性。对于拍打叶片分析,发现摇臂是最稳定的轮毂类型,在前进比为3且锁数为18的情况下,没有显示不稳定状态。对修剪控制,升力,动力和桨叶拍打的分析表明对于较小的正总螺距,对于摇臂和铰接式转子,都可以保持微调而无需过多的控制输入或拍打角。

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