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Applying the ensemble averaging method with a pressure-velocity sensor to measure sound absorption characteristics of porous clay bricks

机译:应用集成平均法和压力传感器测量多孔黏土砖的吸声特性

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摘要

This study focuses on the application of the ensemble averaging (EA) method that uses a pressure-velocity sensor (pu-sensor) to measure the sound absorption coefficient of porous clay bricks. It investigates factors including sample sizes, positions, and material properties of the porous clay bricks. The samples used in this study were produced from local red clay in Lampang, Thailand, whereby 2 mm charcoal was added to the mixture at a ratio of 30 wt%. Subsequently, the samples were formed by hydraulic pressing at 50 kN and were fired at 1100 degrees C. Testing was conducted in a reverberation room, whereby the selected frequency used was 100-3000 Hz. The validation found that the EA method with pu-sensor (EA(pu) method) is applicable for the measurement of porous clay bricks. Samples of 30-cm square or larger are sufficient for the EA pu method, and the optimum measurement position is at the center of the sample which presented small standard deviations. Sound absorption coefficients measured at positions far away from the center are in higher values. At 100-800 Hz, the sound absorption coefficient values are similar across every sample, despite the samples having different physical properties. On the other hand, the sound absorption coefficient, when observed with a frequency of over 1000 Hz, shows a clear difference. Moreover, the correlation indicates that the bulk density is an essential factor for porous clay bricks, as made evident by its high correlation value of 0.92. (C) 2020 Elsevier Ltd. All rights reserved.
机译:这项研究的重点是集成平均法(EA)的应用,该方法使用压力-速度传感器(pu-sensor)来测量多孔粘土砖的吸声系数。它研究的因素包括多孔粘土砖的样品大小,位置和材料性能。本研究中使用的样品是从泰国南邦府的当地红粘土生产的,其中将2毫米的木炭以30重量%的比例添加到混合物中。随后,通过在50 kN上的液压压制成形样品,并在1100℃下烧制。在混响室中进行测试,由此选择的使用频率为100-3000 Hz。验证发现,采用pu传感器的EA方法(EA(pu)方法)适用于多孔粘土砖的测量。 30平方厘米或更大的样本足以用于EA pu方法,并且最佳测量位置位于样本中心,其标准偏差较小。在远离中心的位置处测得的吸声系数较高。尽管样品具有不同的物理特性,但在100-800 Hz时,每个样品的吸声系数值都相似。另一方面,当以超过1000Hz的频率观察时,吸声系数显示出明显的差异。此外,相关性表明堆积密度是多孔粘土砖的重要因素,其高相关性值为0.92可以证明这一点。 (C)2020 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Applied Acoustics》 |2020年第7期|107250.1-107250.11|共11页
  • 作者

  • 作者单位

    Oita Univ Grad Sch Engn 700 Dannoharu Oita 8701192 Japan|Lampang Rajabhat Univ Fac Ind Technol 119 Chomphu Mueang 52100 Lampang Thailand;

    Oita Univ Fac Engn 700 Dannoharu Oita 8701192 Japan;

    Oita Univ Res Promot Inst 700 Dannoharu Oita 8701192 Japan;

    Oita Univ Grad Sch Engn 700 Dannoharu Oita 8701192 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Porous clay brick; Ensemble averaging; Pressure-velocity sensor;

    机译:多孔粘土砖;集合平均;压力-速度传感器;

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