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NUMERICAL INVESTIGATIONS OF THE AERODYNAMICS AND HANDLING QUALITIES OF A HELICOPTER FLYING ACROSS A WIND TURBINE WAKE

机译:绕过风轮机飞行的直升机气动和操纵质量的数值研究

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The present paper illustrates the outcomes of a research activity carried out by CIRA and the Delft University of Technology in the framework of the GARTEUR HC/AG-23 action group. This activity has been aimed at investigating, from the aerodynamic and handling qualities point of view, the problem of a Bo105 helicopter rotor crossing, in low-speed level flight, the wake of an NREL 5MW wind turbine (WT), in the presence of atmospheric boundary layer (ABL). A crossing flight path orthogonal to the WT axis, and located two WT rotor diameters downstream to the WT disk, has been selected. Three different flight altitudes, with respect to the WT hub, and two flight directions, L2R and R2L, have been investigated. The aerodynamic simulations have been carried out by using a BEM methodology and by applying a decoupled interactional procedure specifically conceived for the purpose. The rotor blades have been assumed fully rigid. The simulations have shown that the encounter of a uniform side wind or a WT wake with a helicopter rotor, locally alters the velocities acting on the helicopter rotor blades, in magnitude and/or direction, because of the WT axial and radial changes in velocity deficit; the presence of the WT blade tip vortices; the presence of the ABL; the WT wake swirl. These velocities modify the helicopter rotor blade sectional effective angles of attack, which, in turn, change the blade loads, generate flapping angles and alter the rotor forces and moments. Compared to the flight inside a uniform side wind, the crossing of a WT wake produces important rotor rolling and pitching moments, the thrust increases while the torque decreases. The flight altitude has only moderate effects. Regarding the handling qualities, the paper has considered the ADS-33 pitch and roll attitude quickness parameters and has shown that when the WT wake approaches the helicopter from left to right (L2R) this results in an increase in the quickness that pilot needs to command. The analysis of the results has concluded that, for a WT rotor and helicopter rotor both counter-clockwise rotating, a pilot experiences a greater workload during the L2R crossing of the WT wake, but also that this situation is transient in nature and the pilot needs to command it only momentarily.
机译:本文阐述了CIRA和代尔夫特理工大学在GARTEUR HC / AG-23行动小组的框架下开展的一项研究活动的成果。这项活动的目的是从空气动力学和操纵性能的角度研究Bo105直升机旋翼在低速飞行中越过NREL 5MW风力涡轮机(WT)的问题。大气边界层(ABL)。已选择与WT轴正交且位于WT圆盘下游两个WT转子直径的交叉飞行路径。相对于WT枢纽,已研究了三种不同的飞行高度,以及两个飞行方向L2R和R2L。通过使用BEM方法并应用专门为此目的设计的解耦交互过程,进行了空气动力学模拟。转子叶片被认为是完全刚性的。仿真表明,由于WT轴向和径向速度的变化,导致直升机旋翼遇到均匀的侧风或WT尾流会局部改变作用在直升机旋翼上的速度的大小和/或方向。 ; WT叶片尖端涡旋的存在; ABL的存在; WT尾流漩涡。这些速度会改变直升机旋翼桨叶的截面有效攻角,进而改变桨叶载荷,产生拍打角并改变旋翼力和力矩。与均匀的侧风飞行相比,WT尾流的穿越会产生重要的转子侧倾和俯仰力矩,推力增加而扭矩减小。飞行高度只有中等程度的影响。关于操纵质量,本文已经考虑了ADS-33俯仰和侧倾姿态的快速度参数,并表明当WT尾流从左向右(L2R)接近直升机时,这会增加飞行员需要指挥的速度。结果分析得出结论,对于WT旋翼和直升飞机旋翼均逆时针旋转,飞行员在WT尾流的L2R穿越过程中要承受更大的工作量,而且这种情况本质上是瞬态的,飞行员需要只暂时命令它。

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