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首页> 外文期刊>The Journal of the Acoustical Society of America >Spherical wave propagation through inhomogeneous, anisotropic turbulence: Log-amplitude and phase correlations
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Spherical wave propagation through inhomogeneous, anisotropic turbulence: Log-amplitude and phase correlations

机译:通过非均匀各向异性湍流传播的球面波:对数幅度和相位相关

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摘要

Inhomogeneity and anisotropy are intrinsic characteristics of daytime and nighttime turbulence in the atmospheric boundary layer. In the present paper, line-of-sight sound propagation through inhomogeneous, anisotropic turbulence with temperature and velocity fluctuations is considered. Starting from a parabolic equation and using the Markov approximation, formulas are derived for the correlation functions and variances of log-amplitude and phase fluctuations of a spherical sound wave. These statistical moments of a sound field are important for many practical applications in atmospheric acoustics. The derived formulas for the correlation functions and variances generalize those already known in the literature for two limiting cases: (a) homogeneous, isotropic turbulence, and (b) inhomogeneous, anisotropic turbulence with temperature fluctuations only. Furthermore, the formulas differ from those for the case of plane wave propagation. Using the derived formulas and Mann's spectral tensor of velocity fluctuations for shear-driven turbulence, the correlation functions and variances of log-amplitude and phase fluctuations are studied numerically. The results obtained clearly show that turbulence inhomogeneity and anisotropy significantly affect sound propagation in the atmosphere.
机译:不均匀性和各向异性是大气边界层中白天和晚上湍流的固有特征。在本文中,考虑了视线声音通过具有温度和速度波动的非均匀各向异性湍流的传播。从抛物线方程开始,使用马尔可夫近似,推导了相关函数以及球形声波的对数幅度和相位波动的相关函数和方差的公式。声场的这些统计矩对于大气声学中的许多实际应用很重要。相关函数和方差的推导公式概括了两种极限情况下文献中已知的公式:(a)均质各向同性湍流,以及(b)仅具有温度波动的非均质各向异性湍流。此外,这些公式不同于平面波传播情况下的公式。利用推导公式和切变驱动湍流的Mann's速度涨落谱张量,对对数振幅和相位涨落的相关函数和方差进行了数值研究。获得的结果清楚地表明,湍流的不均匀性和各向异性显着影响了声音在大气中的传播。

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