首页> 外文期刊>The Journal of the Acoustical Society of America >Infrasonic ray tracing applied to small-scale atmospheric structures: Thermal plumes and updrafts/downdrafts
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Infrasonic ray tracing applied to small-scale atmospheric structures: Thermal plumes and updrafts/downdrafts

机译:适用于小规模大气结构的次声射线追踪:热羽和上升气流/下降气流

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摘要

A ray-tracing program is used to estimate the refraction of infrasound by the vertical structure of the atmosphere in thermal plumes, showing only weak effects, as well as in updrafts and down-drafts, which can act as vertical wave guides. Thermal plumes are ubiquitous features of the daytime atmospheric boundary layer. The effects of thermal plumes on lower frequency sound propagation are minor with the exception of major events, such as volcanoes, forest fires, or industrial explosions where quite strong temperature gradients are involved. On the other hand, when strong, organized vertical flows occur (e.g., in mature thunderstorms and microbursts), there are significant effects. For example, a downdraft surrounded by an updraft focuses sound as it travels upward, and defocuses sound as it travels downward. Such propagation asymmetry may help explain observations that balloonists can hear people on the ground; but conversely, people on the ground cannot hear balloonists aloft. These results are pertinent for those making surface measurements from acoustic sources aloft, as well as for measurements of surface sound sources using elevated receivers. (C) 2015 Acoustical Society of America.
机译:光线追踪程序用于估计热羽中大气垂直结构对次声的折射,仅显示微弱的影响,以及在上升和下降气流中都可以充当垂直波导。热羽是白天大气边界层的普遍特征。除主要事件(如火山,森林大火或涉及相当大的温度梯度的工业爆炸)外,热羽对低频声音传播的影响很小。另一方面,当发生强烈的,有组织的垂直流时(例如,在成熟的雷暴和微暴中),将产生重大影响。例如,被上气流包围的下气流在声音向上传播时会聚焦,而在声音向下传播时会散焦。这种传播的不对称性可能有助于解释观察到的结果,即气球飞行者可以听到地面上的人的声音。但是相反地,地面上的人听不到高空气球爱好者的声音。这些结果与从高处进行声源表面测量的结果以及使用高架接收器进行表面声源测量的结果有关。 (C)2015年美国声学学会。

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