Effects of rotor separation on the axial descent performance of dual-rotor configurations

IF 2.8 Q2 MECHANICS Flow (Cambridge, England) Pub Date : 2023-02-08 DOI:10.1017/flo.2022.31
M. Veismann, Christopher Dougherty, M. Gharib
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Abstract

Abstract Rotorcraft can encounter highly unsteady flow when descending at a steep angle, leading to a flow condition called vortex ring state, which is associated with strong oscillatory airloads and substantial losses in mean rotor thrust. This study examines the aerodynamic coupling between closely arranged rotors in vertical flight and assesses the extent to which rotor–rotor interactions affect the rotor performance in this flight stage. Wind tunnel experiments were performed on a small-scale, dual-rotor set-up with adjustable rotor spacing, and the effect of rotor separation on thrust generation was quantified. Pairs of 4 in., 5 in. and 6 in. rotors ($3.0 \times 10^4< Re<8.1 \times 10^4$) were investigated, with load cell measurements showing significant thrust losses and concomitantly increased thrust oscillations as descent rate increased. Peak losses and fluctuations were consistently recorded at descent rates of 1.2–1.3 times the hover induced velocity for all rotor sizes and separations. While tests showed that the mean aerodynamic performance of dual-rotor systems is generally similar to that of single rotors, appreciable changes to the descent characteristics could be observed at low rotor separations. Particle image velocimetry flow visualization suggests considerable changes to the flow field as rotor separation decreases, where individual vortex ring systems merge into a single vortex ring structure.
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转子分离对双转子结构轴向下降性能的影响
摘要旋翼飞机在以陡峭角度下降时可能会遇到高度不稳定的流动,导致一种称为涡环状态的流动条件,这种流动条件与强烈的振荡空气载荷和平均旋翼推力的巨大损失有关。本研究考察了垂直飞行中紧密排列的旋翼之间的气动耦合,并评估了旋翼-旋翼相互作用对该飞行阶段旋翼性能的影响程度。在具有可调转子间距的小型双转子装置上进行了风洞实验,并量化了转子分离对推力产生的影响。研究了4英寸、5英寸和6英寸的成对转子($3.0×10^4<Re<8.1×10^4$),测压元件测量显示,随着下降率的增加,推力损失显著,同时推力振荡增加。在所有旋翼尺寸和分离情况下,下降率为悬停诱导速度的1.2–1.3倍时,始终记录到峰值损失和波动。虽然测试表明,双旋翼系统的平均空气动力学性能通常与单旋翼系统的空气动力学性能相似,但在较低的旋翼间距下,可以观察到下降特性的明显变化。粒子图像测速流动可视化表明,随着转子分离度的降低,流场发生了相当大的变化,单个涡流环系统合并为单个涡流环结构。
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