Design and optimization of a noise reduction system for infrasonic measurements using elements with low acoustic impedance

声学 噪音(视频) 次声 还原(数学) 降噪 电阻抗 参数统计 风速 频带 计算机科学 物理 工程类 电信 气象学 天线(收音机) 电气工程 数学 统计 图像(数学) 人工智能 几何学
作者
Benoît Alcoverro,Alexis Le Pichon
出处
期刊:Journal of the Acoustical Society of America [Acoustical Society of America]
卷期号:117 (4): 1717-1727 被引量:52
标识
DOI:10.1121/1.1804966
摘要

The implementation of the infrasound network of the International Monitoring System (IMS) for the enforcement of the Comprehensive Nuclear-Test-Ban Treaty (CTBT) increases the effort in the design of suitable noise reducer systems. In this paper we present a new design consisting of low impedance elements. The dimensioning and the optimization of this discrete mechanical system are based on numerical simulations, including a complete electroacoustical modeling and a realistic wind-noise model. The frequency response and the noise reduction obtained for a given wind speed are compared to statistical noise measurements in the [0.02–4] Hz frequency band. The effects of the constructive parameters—the length of the pipes, inner diameters, summing volume, and number of air inlets—are investigated through a parametric study. The studied system consists of 32 air inlets distributed along an overall diameter of 16 m. Its frequency response is flat up to 4 Hz. For a 2 m/s wind speed, the maximal noise reduction obtained is 15 dB between 0.5 and 4 Hz. At lower frequencies, the noise reduction is improved by the use of a system of larger diameter. The main drawback is the high-frequency limitation introduced by acoustical resonances inside the pipes.

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