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Rotor performance enhancement via localized pitch control and its effects on hub vibrations and pitch link loads

机译:通过局部变桨控制提高转子性能,以及对轮毂振动和变桨连杆负载的影响

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摘要

This paper presents an approach to enhance rotor performance and reduce vibration levels at the rotor hub by introducing local blade pitch variations at specific azimuthal locations. Two different variants of these 'localized pitch control' (LPC) functions are presented and their effects both on rotor performance and vibrational loads are studied using parametric variation and subsequent numerical optimization of the respective LPC signals. The results are compared with those obtained from a conventional approach using 2/rev higher harmonic control (HHC). Numerical calculations were performed using the DLR's comprehensive rotor code S4 with a modified Beddoes inflow-model simulating an isolated hingeless rotor at an advance ratio of μ = 0.382. In those simulations power reductions of up to 7.61 and 3.36% could be reached using two sets of different model rotor blades. Both for power reduction and simultaneous reduction of power and 4/rev vibrational loads, LPC performed slightly better than conventional 2/rev HHC but also resulted in higher actuation demands which have to be taken into account for real-world applications of LPC.
机译:本文提出了一种通过在特定方位角位置引入局部叶片螺距变化来增强转子性能并降低转子轮毂振动水平的方法。介绍了这些“局部桨距控制”(LPC)函数的两个不同变体,并使用参数变化和相应LPC信号的后续数值优化研究了它们对转子性能和振动负载的影响。将结果与使用2 / rev高次谐波控制(HHC)的常规方法获得的结果进行比较。使用DLR的综合转子代码S4和改进的Beddoes流入模型进行了数值计算,该模型模拟了一个独立的无铰链转子,其前进比为μ= 0.382。在这些模拟中,使用两组不同模型的转子叶片可以分别将功率降低7.61和3.36%。 LPC在降低功率,同时降低功率和4 / rev振动负载方面都表现出比传统的2 / rev HHC稍好一些,但是导致了更高的致动要求,这在LPC的实际应用中必须予以考虑。

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