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Infrasonic interferometry of stratospherically refracted microbaroms - A numerical study

机译:平流层折射微气压的次声干涉法-数值研究

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摘要

The atmospheric wind and temperature can be estimated through the traveltimes of infrasound between pairs of receivers. The traveltimes can be obtained by infrasonic interferometry. In this study, the theory of infrasonic interferometry is verified and applied to modeled stratospherically refracted waves. Synthetic barograms are generated using a raytracing model and taking into account atmospheric attenuation, geometrical spreading, and phase shifts due to caustics. Two types of source wavelets are implemented for the experiments: blast waves and microbaroms. In both numerical experiments, the traveltimes between the receivers are accurately retrieved by applying interferometry to the synthetic barograms. It is shown that microbaroms can be used in practice to obtain the traveltimes of infrasound through the stratosphere, which forms the basis for retrieving the wind and temperature profiles.
机译:可以通过次对接收器之间次声的传播时间来估计大气风和温度。传播时间可以通过次声干涉法获得。在这项研究中,次声干涉法的理论得到验证,并应用于模拟的平流层折射波。使用射线追踪模型并考虑到大气衰减,几何扩展以及由于焦散引起的相移,生成了合成柱状图。实验采用两种类型的源子波:爆炸波和微巴。在两个数值实验中,通过将干涉测量法应用于合成柱状图,可以准确地获取接收器之间的传播时间。结果表明,在实践中可以使用微巴来获得次声通过平流层的传播时间,这是获取风和温度分布图的基础。

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