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Experimental investigation of the sound absorption characteristics of vegetated roofs

机译:植被屋顶吸声特性的实验研究

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An experimental investigation of the sound absorption characteristics of vegetated roof substrates and plots has been completed. First, an impedance tube was used to measure the normal-incidence absorption coefficients of substrates and their constituents. Substrates provided significant sound absorption, with coefficients varying from 0.03 at 250 Hz to 0.89 at 2000 Hz. Absorption increased with the percentage of organic matter and decreased with moisture content and compaction. A multi-variable regression model was developed for predicting the absorption of substrates. Secondly, the sound absorption of vegetated roof plots was investigated using the spherical-decoupling method. An optimal method, validated in an anechoic chamber, was used to determine the diffuse-field absorption coefficients of unplanted and planted rooftop test plots. Sound absorption increased with increased substrate depth (without vegetation) and decreased with the addition of vegetation and plant establishment. The mean noise reduction coefficient of established vegetated roof plots, with distinctly different plant communities in substrate depths of 50-200 mm, ranged from 0.20 to 0.63 when evaluated over a two-year period. The results confirm that the sound absorption of vegetated roofs is a function of substrate depth, plant community establishment, and moisture content in the plants and substrate. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已完成对植被屋顶基质和样地的吸声特性的实验研究。首先,使用阻抗管来测量基板及其成分的法向入射吸收系数。基板具有显着的吸声效果,系数从250 Hz时的0.03到2000 Hz时的0.89不等。吸收随着有机物的百分比而增加,而随着水分含量和压实度而降低。开发了用于预测底物吸收的多变量回归模型。其次,采用球面解耦方法研究了植被屋顶积土的吸声情况。在消声室内验证了一种最佳方法,该方法用于确定未种植和已种植的屋顶测试区的扩散场吸收系数。声音吸收随着底物深度的增加(没有植被)而增加,并随着增加的植被和植物而减少。在过去的两年中进行评估时,在50-200 mm的基质深度中具有明显不同植物群落的已建立的植被屋顶小区的平均降噪系数在0.20至0.63之间。结果证实,植物屋顶的吸声与基质深度,植物群落的建立以及植物和基质中的水分含量有关。 (C)2015 Elsevier Ltd.保留所有权利。

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