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地面效应建模的若干方面。

Aspects of ground effect modeling.

机构信息

Acoustic Research Center SINTEF and The Norwegian University of Science and Technology, N-7465 Trondheim, Norway.

出版信息

J Acoust Soc Am. 2011 Jan;129(1):47-53. doi: 10.1121/1.3500694.

Abstract

A recently published one-parameter ground model based on Darcy's law is here generalized into a two-parameter model which depends on an effective flow resistivity and an effective layer depth. Extensive field measurements of the acoustic impedance of various ground types have been carried out for frequencies in the range from 200 Hz to 2.5 kHz. The model based on Darcy's law gives an improved fit to the measurements compared to the Delany-Bazley model. It is, in addition, argued on purely theoretical grounds that the suggested model is preferable. In contrast to the Delany-Bazley model it corresponds to a proper causal time-domain model. This is particularly relevant for extrapolation of the models to lower frequencies and for the recently developed harmonized methods intended for use in the implementation of the European Union directive on the assessment and management of environmental noise. The harmonized methods include frequencies down to the 25 Hz third octave band and have the Delany-Bazley ground impedance model as the default choice. The arguments presented here suggest that this default choice should be replaced by the more physically based model from the law of Darcy.

摘要

最近发表的一种基于达西定律的单参数地面模型在这里被推广为双参数模型,该模型取决于有效流动电阻率和有效层深度。已经对各种地面类型的声阻抗进行了广泛的现场测量,频率范围从 200 Hz 到 2.5 kHz。与 Delany-Bazley 模型相比,基于达西定律的模型对测量结果的拟合效果更好。此外,从纯粹的理论角度来看,也认为建议的模型是更好的选择。与 Delany-Bazley 模型不同,它对应于一个适当的因果时域模型。这对于将模型外推到更低的频率以及最近开发的用于实施欧盟环境噪声评估和管理指令的协调方法特别重要。协调方法包括低至 25 Hz 三分之一倍频带的频率,并且默认选择了 Delany-Bazley 地面阻抗模型。这里提出的论点表明,应该用更基于达西定律的物理模型来取代这个默认选择。

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