Integrated Evaluation of the Aeroacoustics and Psychoacoustics of a Single Propeller

心理声学 消声室 声学 空气动力学 螺旋桨 空气声学 计算空气声学 烦恼 噪音(视频) 音质 推进器 工程类 计算机科学 声压 响度 海洋工程 物理 航空航天工程 人工智能 心理学 感知 神经科学 图像(数学)
作者
Jianwei Sun,Koichi Yonezawa,Eiji Shima,Liu H
出处
期刊:International Journal of Environmental Research and Public Health [MDPI AG]
卷期号:20 (3): 1955-1955 被引量:1
标识
DOI:10.3390/ijerph20031955
摘要

Aeroacoustic noise in multiple rotor drones has been increasingly recognized as a crucial issue, while noise reduction is normally associated with a trade-off between aerodynamic performance and sound suppression as well as sound quality improvement. Here, we propose an integrated methodology to evaluate both aeroacoustics and psychoacoustics of a single propeller. For a loop-type propeller, an experimental investigation was conducted in association with its aerodynamic and acoustic characteristics via a hover stand test in an anechoic chamber; the psychoacoustic performance was then examined with psychoacoustic annoyance models to evaluate five psychoacoustic metrics comprising loudness, fluctuation strength, roughness, sharpness, and tonality. A comparison of the figure of merit (FM), the overall sound pressure level (OASPL) and psychoacoustic metrics was undertaken among a two-blade propeller, a four-blade propeller, the loop-type propeller, a wide chord loop-type propeller, and a DJI Phantom III propeller, indicating that the loop-type propeller enables a remarkable reduction in OASPL and a noticeable improvement in sound quality while achieving comparable aerodynamic performance. Furthermore, the psychoacoustic analysis demonstrates that the loop-type propeller can improve the psychological response to various noises in terms of the higher-level broadband and lower-level tonal noise components. It is thus verified that the integrated evaluation methodology of aeroacoustics and psychoacoustics can be a useful tool in the design of low-noise propellers in association with multirotor drones.
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