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Sound absorption deviation measured using pressure-velocity sensors by ensemble averaging technique under different relative humidity conditions

机译:在不同的相对湿度条件下使用压力平均传感器通过集成平均技术测量的吸声偏差

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摘要

Recently, measurements using pressure-velocity sensors (pu-sensor) have come to be important in various fields of acoustics. Insufficient data exist to assure the accuracy and stability of results from measurements obtained using a pu-sensor. Herein, deviations found in the resulting absorption coefficients measured using pu-sensors were examined in relation to differences in relative humidity at the time of calibration and those at the time of absorption measurements. A series of sound absorption measurements using pu-sensors was conducted in a reverberation room under humidity control using an ensemble averaging technique proposed in reports of the authors' earlier studies. Three pu-sensors having the same specifications were used for comparison. Measurements were taken of three porous materials: both absorptive and less absorptive. Then pu-sensors were calibrated using a standing-wave-tube (SWT). Both the materials and SWT were put inside the reverberation room for more than half a day to maintain inside humidity as approximately equivalent to room conditions. The relative humidity inside the reverberation room was controlled to 40-70%. Results show that certain fluctuations occur in the amplitudes of calibration values of pressure sensors and in those of velocity sensors when the relative humidity varies from 40% to 70%: Moreover, if the difference of humidity between that at calibration and that at the time of measurement is maintained within 8%, then sound absorption can be measured stably with less deviation. The issues presented herein provide specific guidelines not only for absorption measurements but also for various applications of pu-sensors. (C) 2017 Elsevier Ltd. All rights reserved.
机译:近来,在各种声学领域中,使用压力-速度传感器(pu-sensor)的测量已变得重要。数据不足以确保使用pu传感器获得的测量结果的准确性和稳定性。在此,针对在校准时和吸收测量时的相对湿度的差异,检查了使用pu传感器测得的所得吸收系数的偏差。作者在较早的研究报告中提出了使用集合平均技术在湿度控制下的混响室中,使用pu传感器进行一系列吸声测量。具有相同规格的三个pu传感器用于比较。测量了三种多孔材料:吸收性和吸收性较低。然后使用驻波管(SWT)校准pu传感器。材料和SWT都在混响室内放置了半天以上,以保持室内湿度大致等于室内条件。混响室内的相对湿度控制在40-70%。结果表明,当相对湿度在40%到70%之间变化时,压力传感器和速度传感器的校准值会出现一定的波动:此外,如果校准时的湿度与校准时的湿度之间存在差异,保持在8%以内,则可以稳定地测量吸声,且偏差较小。本文提出的问题不仅为吸收测量提供了特定的指导,还为Pu传感器的各种应用提供了具体的指导。 (C)2017 Elsevier Ltd.保留所有权利。

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