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首页> 外文期刊>The Journal of the Acoustical Society of America >Comparison of measurements and predictions of sound propagation in a valley-slope configuration in an inhomogeneous atmosphere
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Comparison of measurements and predictions of sound propagation in a valley-slope configuration in an inhomogeneous atmosphere

机译:在不均匀大气中以谷坡配置的声音传播的测量和预测的比较

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Mountainous areas form a very specific context for sound propagation: There is a particular ground effect and meteorological conditions are often extreme. In this paper, detailed sound propagation calculations are compared to noise measurements accompanied by meteorological observations. The sound source considered is road traffic along the center axis of a valley. Noise levels were measured in two cross sections, at three locations each: one on the valley floor and two on the slopes, up to 166 in above the source. For the numerical calculations, the rotated Green's function parabolic equation method is used, taking into account the undulation of the terrain and an inhomogeneous atmosphere. Typical parameters of this method were optimized for computational efficiency. Predictions agree with measurements to within 3 dBA up to propagation distances of I kin, in windless conditions. The calculations further show that the terrain profile is responsible for an increase in sound pressure level at distant, elevated points up to 30 dBA compared to a flat ground situation. Complex temperature profiles account for level changes between -3 dBA and +10 dBA relative to a homogeneous atmosphere. This study shows that accurate sound level prediction in a valley-slope configuration requires detailed numerical calculations. (C) 2007 Acoustical Society of America.
机译:山区形成了非常特殊的声音传播环境:有特殊的地面效应,气象条件通常是极端的。在本文中,详细的声音传播计算与伴随气象观测的噪声测量进行了比较。所考虑的声源是沿山谷中心轴的道路交通。在两个横截面中分别测量了三个位置的噪声水平:一个位于谷底,两个位于斜坡上,最高到源头上方166。对于数值计算,使用了旋转格林函数抛物线方程法,同时考虑了地形的起伏和不均匀的大气。该方法的典型参数已针对计算效率进行了优化。在无风条件下,预测与测量值相吻合,误差范围在3 dBA以内,达到1 kin的传播距离。计算结果进一步表明,与平坦的地面情况相比,地形剖面导致远处的升高点处的声压级提高了30 dBA。相对于均匀的气氛,复杂的温度曲线说明了-3 dBA和+10 dBA之间的电平变化。这项研究表明,在谷坡配置中准确的声级预测需要详细的数值计算。 (C)2007美国声学学会。

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