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THE HORIZONTAL DIRECTIVITY OF NOISE RADIATED BY A RAIL AND IMPLICATIONS FOR THE USE OF MICROPHONE ARRAYS

机译:轨道辐射的噪声水平方向性及对使用麦克风阵列的影响

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摘要

Structural waves propagating along a railway rail form an extended source of sound radiation. Using an equivalent source model the distribution of this sound in a horizontal plane is investigated and shown to consist mainly of sound propagation at a particular angle to the normal. This direction is determined by the ratio of the wavenumbers in the rail and in air. Due to the extended nature of the rail as a source, the spatial distribution of the sound field in the direction along the track does not lend itself to the use of a simple directivity factor. The consequences for the measurement of noise from the rail using a microphone array are then explored. It is shown that a microphone array focussed normal to the rail does not detect most of the sound radiated by the rail. By turning the focus angle, the sound detected becomes a maximum when this angle corresponds to the angle of propagation of the sound radiation. Measurements on a test track using artificial excitation and measurements during the passage of a train confirm these conclusions.
机译:沿铁路传播的结构波形成了扩展的声辐射源。使用等效的源模型,研究了这种声音在水平面中的分布,并显示主要由与法线成特定角度的声音传播组成。该方向由轨道和空气中的波数之比确定。由于轨道作为源的扩展特性,沿轨道方向的声场空间分布不会适合于使用简单的方向性因子。然后探讨了使用麦克风阵列测量来自轨道的噪声的后果。结果表明,垂直于导轨聚焦的麦克风阵列无法检测到导轨辐射的大部分声音。通过旋转聚焦角,当该角度与声音辐射的传播角度相对应时,检测到的声音最大。使用人工激励在测试轨道上进行的测量以及火车通过过程中的测量证实了这些结论。

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