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Influence of short-term meteorological variations over flat grass-covered ground on noise level fluctuation and application of mean meteorological data to noise prediction

机译:平坦草地上短期气象变化对噪声水平波动的影响及平均气象数据在噪声预测中的应用

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References(15) For environmental noise prediction, it is practicable to use meteorological data available from local meteorological observatories. However, these observations have limitations induced by the methods of measuring and data processing. Usually only mean meteorological values averaged over one 10 min period every hour are calculated. To apply these mean meteorological variables to noise propagation appropriately, we need to investigate the characteristics of both acoustic and meteorological parameters within the 10 min period. We made simultaneous measurements of both parameters over flat grass-covered ground and estimated effective sound speed profiles by similarity theory, using the meteorological data measured under conditions similar to those at local observatories. The changes in sound pressure level in periods around sunrise and sunset were similar and were smaller than those around culmination, in which fluctuations of approximately 20 dB were measured at higher frequencies at a distance of 100 m. Noise predictions by the parabolic equation method and sound speed profiles determined from instantaneous meteorological variations generally agreed with the measurements except in the time period around culmination. When we used 10 min mean meteorological values in combination with the parabolic equation method, we obtained reasonable agreement with the measurements at middle frequencies in time periods around sunrise and sunset.
机译:参考文献(15)对于环境噪声的预测,使用从当地气象台获得的气象数据是可行的。但是,这些观察结果受到测量和数据处理方法的限制。通常仅计算每小时每小时10分钟内平均的平均气象值。为了将这些平均气象变量适当地应用于噪声传播,我们需要研究10分钟内声学和气象参数的特征。我们使用在类似于当地天文台的条件下测得的气象数据,在平坦的草皮地面上同时测量了两个参数,并通过相似性理论估算了有效声速剖面。日出和日落前后,声压级的变化是相似的,并且小于高潮时的声压级,后者在100 m的较高频率处测得的波动约为20 dB。通过抛物线方程法进行的噪声预测和根据瞬时气象变化确定的声速曲线通常与测量结果一致,除了在顶点附近的时间段内。当我们将10分钟平均气象值与抛物线方程法结合使用时,我们与日出和日落前后时间段中频处的测量值取得了合理的一致性。

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