Acoustics and Vibration Laboratory, Korea Research Institute of Standards and Science, P.O. Box 102, Yuseong, Deajon 305-340, South Korea.
J Acoust Soc Am. 2010 Oct;128(4):1823-32. doi: 10.1121/1.3478771.
Nearfield acoustical holography (NAH) data measured by using a microphone array attached to a high-speed aircraft or ground vehicle include significant airflow effects. For the purpose of processing the measured NAH data, an improved nearfield acoustical holography procedure is introduced that includes the effects of a fluid medium moving at a subsonic and uniform velocity. The convective wave equation along with the convective Euler's equation is used to develop the proposed NAH procedure. A mapping function between static and moving fluid medium cases is derived from the convective wave equation. Then, a conventional wave number filter designed for static fluid media is modified to be applicable to the moving fluid cases by applying the mapping function to the static wave number filter. In order to validate the proposed NAH procedure, a monopole simulation at the airflow speed of Mach=-0.6 is conducted. The reconstructed acoustic fields obtained by applying the proposed NAH procedure to the simulation data agree well with directly-calculated acoustic fields. Through an experiment with two loudspeakers performed in a wind tunnel operating at Mach=-0.12, it is shown that the proposed NAH procedure can be also used to reconstruct the sound fields radiated from the two loudspeakers.
近场声全息(NAH)数据通过将麦克风阵列附着在高速飞机或地面车辆上进行测量,其中包括显著的气流效应。为了处理测量的 NAH 数据,引入了一种改进的近场声全息程序,该程序包括以亚音速和均匀速度移动的流体介质的影响。利用对流波动方程和对流欧拉方程来开发所提出的 NAH 程序。从对流波动方程推导出静态和运动流体介质情况之间的映射函数。然后,通过将映射函数应用于静态波数滤波器,对用于静态流体介质的常规波数滤波器进行修改,使其适用于运动流体情况。为了验证所提出的 NAH 程序,在气流速度为 Mach=-0.6 的情况下进行了单极子模拟。通过将所提出的 NAH 程序应用于模拟数据来重建声场,所得到的重建声场与直接计算的声场吻合良好。通过在马赫数为-0.12 的风洞中进行的两个扬声器的实验,表明所提出的 NAH 程序也可用于重建两个扬声器辐射的声场。