物理
侧面碰撞
月球的另一边
副作用(计算机科学)
航空航天工程
地面效应(汽车)
机械
地平面
结构工程
热力学
一楼
工程类
建筑工程
地球物理学
计算机科学
程序设计语言
作者
M. Sadegh Araghizadeh,Bidesh Sengupta,Hakjin Lee,R.S. Myong
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2024-08-01
卷期号:36 (8)
被引量:6
摘要
Urban air mobility (UAM) aircraft has emerged as the solution to the growing traffic congestion problems and increasing demand for efficient air mobility. However, noise pollution is one of the major concerns for gaining social acceptance as UAM is being designed for future transport in highly populated urban areas at low altitudes. The noise generated by UAM aircraft can exceed the acceptable noise level due to the ground effect when it approaches a vertiport. This study investigates the ground effects on the aerodynamic and noise performance of side-by-side UAM aircraft in full configuration by utilizing coupled vortex methods and acoustic analogy, respectively. The simulation results show that fuselage and ground directly influence the aerodynamic loads of the rotor blade, wake structure, acoustic signature, and noise directivity. As the aircraft approaches the ground, the sound pressure level (SPL) increases, and the impact of the fuselage becomes more noticeable, especially above the rotor system, due to the stronger upwash wake by the airframe and the ground. Moreover, the most pronounced ground effect on the noise characteristics of the UAM aircraft is the high-frequency tonal noise, and the overall sound pressure level (OASPL) in the aft quadrant of the UAM aircraft is higher than the forward quadrant due to the higher loading in the rear of the rotor plane. The results of the noise hemisphere analysis show that the maximum OASPL increases by more than 3 dBA as the altitude of UAM aircraft gets closer to the ground.
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