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An application of normal mode decomposition to measure the acoustical properties of low growing plants in a broad frequency range

机译:正常模式分解在宽频率范围内测量低生长植物声学特性的应用

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摘要

© 2016 Elsevier Ltd This paper presents a new application of the normal mode decomposition to measure the reflection and absorption coefficients of a low growing living plant in a large 300 × 300 mm impedance tube. In this way the higher frequency limit can be extended by a factor of 3 in comparison to that suggested by the standard ISO 10534-2 method for this type of an impedance tube. The adopted method (Prisutova et al., 2014) is based on minimising the difference between the spatial Fourier transform of the measured sound pressure at a range of closely spaced positions along the impedance tube and the predicted transform arising from the normal mode decomposition method. The angular and frequency dependent complex reflection coefficients for the first 5 normal modes are recovered. The acoustical properties of three plants specimen, Pelargonium hortorum, Begonia benariensis and Hedera helix, are measured with the adopted method. These properties are related to the plant morphology through an equivalent fluid model. It is shown that in some cases the predicted and measured data are in close agreement. However, there are cases when the agreement between these data is poor. The possible reasons for this discrepancy are proposed and discussed. This work paves the way for a better understanding of the relations between the plant morphology and its acoustical properties.
机译:©2016 Elsevier Ltd.本文介绍了正常模式分解的新应用,该模型可用于测量300×300 mm阻抗管中低生长植物的反射和吸收系数。这样,与标准ISO 10534-2方法针对此类阻抗管建议的频率限制相比,可以将较高的频率限制扩展3倍。所采用的方法(Prisutova等人,2014)基于最小化沿阻抗管在紧密间隔的位置处测得的声压的空间傅里叶变换与由正常模式分解方法产生的预测变换之间的差异。恢复了前5个正常模式的角度和频率相关的复反射系数。采用所采用的方法对三种植物标本进行了测定:天竺葵,海棠秋海棠和常春藤螺旋。这些特性通过等效流体模型与植物形态有关。结果表明,在某些情况下,预测数据与实测数据非常吻合。但是,在某些情况下,这些数据之间的一致性很差。提出并讨论了这种差异的可能原因。这项工作为更好地理解植物形态与其声学特性之间的关系铺平了道路。

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