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Investigation of Active Rotor Design and Control for Performance Improvement

机译:主动转子设计与控制以提高性能的研究

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A computational investigation was conducted to identify the optimal performance of a rotor with an active camber morphing mechanism using up to twice-per-revolution (2P) control input. Using rotor comprehensive analysis with an elastic blade model and a free vortex wake for the aerodynamics model to ensure computational efficiency, a parametric study of design and control variables was carried out to identify their influence on rotor performance. The same computational framework was used to obtain optimal control inputs that led to best performance using 2P individual blade control (IBC) via pitch-link inputs and 2P active twist control. The relative potential of the three active mechanisms to improve rotor performance was studied and compared. A level flight condition at μ = 0.3 and C_T/σ = 0.089 was used throughout this investigation. IBC or active twist both yielded maximum performance improvements of 1.8% in terms of power reduction. Optimal isolated 1P and 2P active camber actuation resulted in performance improvements of 3.6% and 3.1%, respectively. Using the best combination of geometric design and optimal superimposed 1P+2P actuation, a rotor power reduction of 4.4% was obtained. Overall, the rotor performance gains obtained using each active rotor mechanism that was investigated were attributed to a more uniform distribution of thrust over the rotor disk.
机译:进行了计算研究,以使用最多每转两次(2P)的控制输入来确定具有主动外倾变形机构的转子的最佳性能。使用带有弹性叶片模型的转子综合分析和空气动力学模型的自由涡流尾迹以确保计算效率,对设计和控制变量进行了参数研究,以确定它们对转子性能的影响。使用相同的计算框架来获得最佳控制输入,从而通过桨距链接输入和2P主动扭曲控制使用2P独立叶片控制(IBC)来获得最佳性能。研究并比较了三种主动机构改善转子性能的相对潜力。在整个研究过程中,使用的水平飞行条件为μ= 0.3和C_T /σ= 0.089。就功耗降低而言,IBC或主动扭转都可将最大性能提高1.8%。最佳的隔离式1P和2P主动外倾驱动可分别将性能提高3.6%和3.1%。使用几何设计和最佳叠加1P + 2P致动的最佳组合,转子功率降低了4.4%。总体而言,使用研究的每个主动转子机构所获得的转子性能提高都归因于推力在转子盘上的分布更加均匀。

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