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首页> 外文期刊>The Journal of the Acoustical Society of America >Wind fence enclosures for infrasonic wind noise reduction
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Wind fence enclosures for infrasonic wind noise reduction

机译:防风罩罩可降低次声风噪声

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摘要

A large porous wind fence enclosure has been built and tested to optimize wind noise reduction at infrasonic frequencies between 0.01 and 10 Hz to develop a technology that is simple and cost effective and improves upon the limitations of spatial filter arrays for detecting nuclear explosions, wind turbine infrasound, and other sources of infrasound. Wind noise is reduced by minimizing the sum of the wind noise generated by the turbulence and velocity gradients inside the fence and by the area-averaging the decorrelated pressure fluctuations generated at the surface of the fence. The effects of varying the enclosure porosity, top condition, bottom gap, height, and diameter and adding a secondary windscreen were investigated. The wind fence enclosure achieved best reductions when the surface porosity was between 40% and 55% and was supplemented by a secondary windscreen. The most effective wind fence enclosure tested in this study achieved wind noise reductions of 20-27 dB over the 2-4 Hz frequency band, a minimum of 5 dB noise reduction for frequencies from 0.1 to 20 Hz, constant 3-6 dB noise reduction for frequencies with turbulence wavelengths larger than the fence, and sufficient wind noise reduction at high wind speeds (3-6 m/s) to detect microbaroms. (C) 2015 Acoustical Society of America.
机译:已经建造并测试了大型多孔防风罩外壳,以优化在0.01至10 Hz的次声频率下的风噪声降低,从而开发出一种简单且经济高效的技术,并改善了用于检测核爆炸的空间滤波器阵列的局限性,风力涡轮机次声以及次声的其他来源。通过最小化围栏内部的湍流和速度梯度所产生的风噪声的总和,以及通过对围栏表面处产生的去相关的压力波动进行面积平均来减少风噪声。研究了改变外壳孔隙率,顶部条件,底部间隙,高度和直径以及添加辅助挡风玻璃的影响。当表面孔隙率在40%到55%之间时,防风罩外壳可实现最大程度的减少,并辅以辅助挡风玻璃。在这项研究中测试的最有效的防风栅栏罩在2-4 Hz频带上实现了20-27 dB的风噪降低,对于0.1至20 Hz的频率,风噪降低至少5 dB,恒定3-6 dB降噪适用于湍流波长大于栅栏的频率,并在高风速(3-6 m / s)下充分降低风噪声以检测微气压。 (C)2015年美国声学学会。

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