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Loudness evaluation of road traffic noise abatement by tree belts

机译:树皮道路交通噪音的响度评价

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Detailed full-wave numerical calculations, partly based on measured input data, show that tree belts can be much more efficient than commonly thought. For road traffic noise applications, the trunks and the forest floor are expected to be responsible for the main part of the noise shielding. The choice of planting scheme and tree belt depth are essential parameters at realistic tree densities. The noise attenuation provided by a tree belt is discussed in relation to the one obtained by traditional thin rigid noise walls. The reference ground type between the edge of the road and the receiver showed to be an important parameter in this comparison. In case of rigid soil, a 30-m deep optimized tree belt could give a similar A-weighted sound pressure level as a 4-m high noise wall at receiver distances exceeding 50 m. For grass-covered ground, the equivalent noise screen height is typically lowered with roughly 1 m. Although both types of noise abatement change the frequency balance in a different way, the course of A-weighted sound pressure levels versus Zwicker loudness is rather similar.
机译:详细的全波数值计算,部分基于测量的输入数据,表明树带可以比普遍认为更有效。对于道路交通噪声应用,预计噪声屏蔽的主要部分负责造林和林地。种植方案和树带深的选择是现实树密度的基本参数。通过传统薄刚性噪声壁获得的树带提供的噪音衰减。道路边缘与接收器之间的参考地面类型显示在该比较中是一个重要参数。在刚性土壤的情况下,30米的深度优化的树带可以在超过50μm的接收器距离处提供与4米高噪声壁相似的加权声压水平。对于草地覆盖的地面,等效噪声屏高度通常用大约1米降低。虽然这两种类型的噪声减少的噪声减少改变了不同方式的频率平衡,但加权声压水平与zwicker响度相当相似。

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