Experimental Investigation of Fenestron Noise

IF 1.4 4区 工程技术 Q2 ENGINEERING, AEROSPACE
W. Olsman
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引用次数: 2

Abstract

The noise radiation of an EC135 Fenestron is investigated by means of flight tests. The noise emission was measured with ground microphones during several different maneuvers. These include hover, rearward flight, and forward flight at different combinations of the side slip angle and the airspeed. In hover, a high level of broadband noise is observed. A comparison with available engine noise data suggested that engine noise is not dominant in hover. In rearward flight, the Fenestron may encounter a relatively clean aerodynamic inflow. However, the measurements do not indicate a reduction in noise radiation of the Fenestron. For rearward flight, a significant increase in main rotor noise is observed. Flights at different combinations of the side slip angle and airspeed show that the Fenestron radiates high levels of tonal noise at high-speed flight at negative side slip. The most likely cause for this is a highly disturbed inflow caused by flow separations of the diffusor outlet edge and the sharp trailing edges of the stator blades. Measurements of the tail boom yaw moment and Fenestron drive shaft torque imply that a reverse flow is possible at medium airspeed, while the Fenestron thrust does not reverse sign. Only at higher airspeeds and negative side slip, it is possible to achieve a thrust reversal in addition to a flow reversal.
窗管噪声的实验研究
采用飞行试验的方法,对EC135型窗管的噪声辐射进行了研究。在几个不同的机动过程中,用地面麦克风测量了噪声发射。这些包括悬停,向后飞行和向前飞行在不同的侧滑角和空速的组合。在悬停时,观察到高水平的宽带噪声。与现有发动机噪声数据的比较表明,发动机噪声不是悬停时的主导因素。在向后飞行时,Fenestron可能会遇到相对干净的空气动力流入。然而,测量结果并未表明窗管的噪声辐射有所减少。后向飞行时,主旋翼噪声显著增加。在不同侧滑角和空速组合下的飞行表明,Fenestron在负侧滑的高速飞行中辐射出高水平的音调噪声。最可能的原因是扩散器出口边缘的流动分离和静叶的锋利尾缘引起的高度扰动流入。尾臂偏航力矩和Fenestron传动轴扭矩的测量表明,在中等空速下,反向流动是可能的,而Fenestron推力没有反向标志。只有在更高的空速和负侧滑移的情况下,才有可能实现除气流反转外的推力反转。
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来源期刊
Journal of the American Helicopter Society
Journal of the American Helicopter Society 工程技术-工程:宇航
CiteScore
4.10
自引率
33.30%
发文量
36
审稿时长
>12 weeks
期刊介绍: The Journal of the American Helicopter Society is a peer-reviewed technical journal published quarterly (January, April, July and October) by AHS — The Vertical Flight Society. It is the world''s only scientific journal dedicated to vertical flight technology and is available in print and online. The Journal publishes original technical papers dealing with theory and practice of vertical flight. The Journal seeks to foster the exchange of significant new ideas and information about helicopters and V/STOL aircraft. The scope of the Journal covers the full range of research, analysis, design, manufacturing, test, operations, and support. A constantly growing list of specialty areas is included within that scope. These range from the classical specialties like aerodynamic, dynamics and structures to more recent priorities such as acoustics, materials and signature reduction and to operational issues such as design criteria, safety and reliability. (Note: semi- and nontechnical articles of more general interest reporting current events or experiences should be sent to the VFS magazine
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