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评估线性化欧拉方程模型对强湍流对声波传播影响。

Evaluating a linearized Euler equations model for strong turbulence effects on sound propagation.

机构信息

Institut franco-allemand de recherches de Saint-Louis (ISL), 5 rue du Général Cassagnou, 68 300 Saint-Louis, France.

出版信息

J Acoust Soc Am. 2013 Apr;133(4):1922-33. doi: 10.1121/1.4792150.

Abstract

Sound propagation outdoors is strongly affected by atmospheric turbulence. Under strongly perturbed conditions or long propagation paths, the sound fluctuations reach their asymptotic behavior, e.g., the intensity variance progressively saturates. The present study evaluates the ability of a numerical propagation model based on the finite-difference time-domain solving of the linearized Euler equations in quantitatively reproducing the wave statistics under strong and saturated intensity fluctuations. It is the continuation of a previous study where weak intensity fluctuations were considered. The numerical propagation model is presented and tested with two-dimensional harmonic sound propagation over long paths and strong atmospheric perturbations. The results are compared to quantitative theoretical or numerical predictions available on the wave statistics, including the log-amplitude variance and the probability density functions of the complex acoustic pressure. The match is excellent for the evaluated source frequencies and all sound fluctuations strengths. Hence, this model captures these many aspects of strong atmospheric turbulence effects on sound propagation. Finally, the model results for the intensity probability density function are compared with a standard fit by a generalized gamma function.

摘要

户外声音传播受到大气湍流的强烈影响。在强烈扰动的条件下或长传播路径下,声音波动达到其渐近行为,例如,强度方差逐渐饱和。本研究评估了一种基于线性化欧拉方程的有限差分时间域求解的数值传播模型在定量再现强和饱和强度波动下的波统计数据的能力。这是之前考虑弱强度波动的研究的延续。该数值传播模型通过二维谐波在长路径和强大气扰动下的传播进行了介绍和测试。结果与可用的波统计数据的定量理论或数值预测进行了比较,包括对数幅度方差和复声压的概率密度函数。在评估的声源频率和所有声音波动强度下,匹配都非常好。因此,该模型捕获了强大气湍流对声音传播的许多影响。最后,将模型的强度概率密度函数的结果与广义伽马函数的标准拟合进行了比较。

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