Model of the phase screen for nonlinear acoustic waves [atmosphere]

V. Khokhlova, O. Rudenko
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Abstract

Theoretical approach for the description of nonlinear acoustic waves transmitted through randomly inhomogeneous thin layer (phase screen) is presented. An exact analytical solutions of governing equations are obtained both for the spatial structure of the field behind the screen and for the temporal waveform. Using this model statistical characteristic of a single N-pulse having passed through the screen is studied. The influence of the random focusing and defocusing effect on the statistical properties of N-wave behind the screen is analyzed. Distribution functions for the shock amplitude, overpressure probability density, and ray convergency are presented. It is shown that the spatial modulation of the phase front affects the average characteristics of the field and causes the strong variations of the wave field parameters.
非线性声波的相位屏模型[大气]
提出了描述非线性声波通过随机非均匀薄层(相位屏)传输的理论方法。得到了屏后场的空间结构和时域波形控制方程的精确解析解。利用该模型研究了单个n脉冲通过筛后的统计特性。分析了随机聚焦和散焦效应对屏后n波统计特性的影响。给出了激波振幅、超压概率密度和射线收敛的分布函数。结果表明,相位前的空间调制影响了场的平均特性,引起了波场参数的强烈变化。
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