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首页> 外文期刊>Izvestiya Atmospheric and Oceanic Physics >Simulating the Influence of an Atmospheric Fine Inhomogeneous Structure on Long-Range Propagation of Pulsed Acoustic Signals
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Simulating the Influence of an Atmospheric Fine Inhomogeneous Structure on Long-Range Propagation of Pulsed Acoustic Signals

机译:模拟大气精细不均匀结构对脉冲声信号的远距离传播的影响

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摘要

The results of simulating the influence of an atmospheric fine structure on the characteristics of acoustic signals propagating throughout the atmosphere for long distances from their sources are presented.A numerical model of an atmospheric fine inhomogeneous structure within the height range z = 20...120 km is proposed to perform calculations.This model and its numerical parameters are based on the current notions of the formation of an atmospheric fine structure due to internal gravity waves.The numerical calculations were performed using the parabolic-equation method.A spatial structure of the acoustic field and the structure of an acoustic signal at long distances from a pulsed source were calculated.It is shown that the presence of an atmospheric fine structure results in a scattering of acoustic signals and their recording in the geometric shadow region.The results of calculations of signal forms are in a satisfactory agreement with data on signals recorded in the geometric shadow region which is formed at a distance of about 300 km from an experimental explosion.
机译:给出了模拟大气细微结构对声源远距离传播到整个大气中的声信号特性的影响的结果。在z = 20 ... 120高度范围内的大气细微不均匀结构的数值模型提出了km的计算方法,该模型及其数值参数是基于当前由内部引力波形成的大气精细结构形成的概念,并采用抛物线方程法进行了数值计算。计算了声场和远离脉冲源的声信号的结构,结果表明,大气精细结构的存在会导致声信号的散射及其在几何阴影区域的记录。的信号形式与几何阴影中记录的信号数据令人满意地吻合距爆炸区域约300公里的低空区域。

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