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Agricultural by-products for building insulation: Acoustical characterization and modeling to predict micro-structural parameters

机译:用于建筑保温材料的农业副产品:声学表征和建模以预测微结构参数

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The acoustical characteristics for building insulation of five largely available plant particles (hemp shiv, sunflower bark and pith, flax shiv and rape straw) without binder were investigated. Results show that they can all be used for acoustical absorption. Measurements were then analyzed to estimate not only the sound absorption coefficient, but also the particles intrinsic properties such as porosities (i.e. total, inter- and intra-particles porosities) and densities (i.e. bulk and skeletal). An equivalent fluid model is then used to predict the sound absorption. From acoustical measurements, simple analytical equations allow to estimate key micro-structural parameters such as tortuosity, viscous and thermal characteristic lengths and resistivity. (c) 2016 Elsevier Ltd. All rights reserved.
机译:研究了五种不带粘合剂的,大量可利用的植物颗粒(麻,豆皮,葵花皮和髓,亚麻皮和油菜秸秆)用于建筑隔热的声学特性。结果表明它们都可以用于吸声。然后分析测量以不仅估计吸声系数,而且估计颗粒的固有性质,例如孔隙率(即总的,颗粒间和颗粒内的孔隙率)和密度(即松散的和骨架的)。然后使用等效流体模型预测吸声。通过声学测量,简单的分析方程式可以估算出关键的微观结构参数,例如曲折度,粘性和热特性长度以及电阻率。 (c)2016 Elsevier Ltd.保留所有权利。

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