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Measurement of sound insulation of acoustic louvres by an impulse method

机译:用脉冲法测量百叶窗的隔音

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This paper presents results of a study of the sound attenuation of acoustic louvres. At the core of the study is an alternative method of measuring sound insulation, impulse response analysis, which circumvents the limitations imposed by standard and proposed standard methods. Using the impulse method, the sound transmission coefficient is measured at different angles of incidence and the angular dependency of transmission loss obtained. In the low frequency range, the transmission is governed by a mass layer effect. The value of transmission loss is independent of angle of incidence. For the mid and high frequencies, diffraction, interference and absorption determine louvre performance and an angular dependency is observed. The transmission at the angle of incidence, corresponding to a line-of-sight through the louvre blades, is the dominant contribution to the angle average value and a single measurement at the pitch of the louvre approximates the overall transmission loss. For the case considered, the geometry of the blades has little influence on the transmission at low-frequencies and the mass of the blades has little influence at higher frequencies. In a companion paper, the impulse data are used to predict the insertion loss provided by the louvre when installed in a plant room.
机译:本文介绍了声学百叶窗的声音衰减的研究结果。研究的核心是另一种测量隔音的方法,即脉冲响应分析,它规避了标准方法和提议的标准方法的局限性。使用脉冲方法,在不同的入射角下测量传声系数,并获得传输损耗的角度依赖性。在低频范围内,传输受质量层效应控制。传输损耗的值与入射角无关。对于中高频,衍射,干涉和吸收决定百叶窗性能,并且观察到角度依赖性。入射角的透射率(对应于通过百叶窗叶片的视线)是角度平均值的主要贡献,并且在百叶窗节距处的单个测量值近似于总的传输损耗。对于所考虑的情况,叶片的几何形状对低频下的传输几乎没有影响,叶片的质量在较高频率下几乎没有影响。在配套文件中,脉冲数据用于预测安装在机房中的百叶窗所提供的插入损耗。

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