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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Anomalous infrasound propagation in a hot stratosphere and the existence of extremely small shadow zones
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Anomalous infrasound propagation in a hot stratosphere and the existence of extremely small shadow zones

机译:次子在热平流层中的异常传播以及存在极小的阴影区

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摘要

Long-range infrasound propagation strongly depends on the state of the stratosphere. Infrasound can be efficiently ducted between the Earth's surface and the stratopause under a favorable wind and temperature structure between 40 and 50 km altitude. Understanding infrasound propagation under variable stratospheric conditions is of importance for a successful verification of the Comprehensive Nuclear-Test Ban Treaty,in which infrasound is used as a verification technique. Inversely, infrasound observations can be used in acoustic remote sensing of the upper atmosphere. In previous studies, attention has been paid to the strength and direction of the circumpolar vortex wind. In this study, an analysis is made of the temperature effect in the stratosphere on infrasound propagation. A case study is presented from an explosion during a sudden stratospheric warming. During such conditions, the size of the classical stratospheric shadow zone (~200 km) appeared to be reduced by a factor of 2. The occurrence of such conditions is quantified by evaluating 10 years of atmospheric specifications. It unexpectedly appeared that the size of the shadow zone can become smaller than 100 km, which is confirmed by evaluating infrasound detections from mining blasts in southwestern Siberia, Russia. These results are valid over a latitudinal range of 20°N to 60°N, which is determined by the stratospheric surf zone.
机译:远次声传播在很大程度上取决于平流层的状态。在40至50 km高度之间的有利风温结构下,次声可以有效地在地球表面与层间顶之间传播。了解平流层可变条件下的次声传播对于成功核查《全面禁止核试验条约》至关重要,在该条约中,次声被用作核实技术。相反,次声观测可用于高层大气的声学遥感。在以前的研究中,已经注意了绕极涡旋风的强度和方向。在这项研究中,分析了平流层中温度对次声传播的影响。在平流层突然变暖期间发生爆炸时,提供了一个案例研究。在这种情况下,典型的平流层阴影区(约200 km)的大小似乎减小了2倍。通过评估10年的大气规格来量化这种情况的发生。出乎意料的是,阴影区的大小可能变得小于100 km,这可以通过评估俄罗斯西伯利亚西南部矿山爆炸中的次声探测来证实。这些结果在由平流层冲浪带确定的20°N至60°N的纬度范围内有效。

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