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How Can the International Monitoring System Infrasound Network Contribute to Gravity Wave Measurements?

机译:国际监测系统次声网络如何对重力波测量做出贡献?

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Gravity waves (GWs) propagate horizontally and vertically in the atmosphere. They transport energy and momentum, and therefore GWs can affect the atmospheric circulation at different altitude layers when dissipating. Thus knowledge about the occurrence of GWs is essential for Numerical Weather Prediction (NWP). However, uniform networks for covering GW measurements globally are rare, especially in the troposphere. It has been shown that an infrasound station of the International Monitoring System (IMS) infrasound network is capable of measuring GWs at the Earth’s surface. The IMS was deployed for monitoring the atmosphere to verify compliance with the Comprehensive Nuclear-Test-Ban-Treaty. In this study, the Progressive Multi-Channel Correlation Method (PMCC) is used for re-processing up to 20 years of IMS infrasound recordings in order to derive GW detections. For this purpose, two alternative PMCC configurations are discussed, covering GW frequencies equivalent to periods of between 5 min and 150 min. These detections mainly reflect sources of deep convection, particularly in the tropics. At mid-latitudes, coherent wind noise more often produces spurious detections. Combining the results of both configurations provides a global dataset of ground-based GW measurements, which enables the calculation of GW parameters. These can be used for improving NWP models.
机译:重力波(GWs)在大气中水平和垂直传播。它们传递能量和动量,因此,GW在消散时会影响不同高度层的大气环流。因此,有关GWs发生的知识对于数值天气预报(NWP)至关重要。但是,用于覆盖全球GW测量值的统一网络很少,尤其是在对流层中。已经显示,国际监测系统(IMS)次声网络的次声站能够测量地球表面的GW。 IMS被部署为监测大气,以核实是否符合《全面禁止核试验条约》。在这项研究中,渐进多通道相关方法(PMCC)用于对长达20年的IMS次声记录进行重新处理,以得出GW检测结果。为此,讨论了两种替代的PMCC配置,覆盖了GW频率,相当于5分钟到150分钟之间的时间。这些探测结果主要反映了深对流的来源,特别是在热带地区。在中纬度,相干的风噪声通常会产生杂散检测。结合两种配置的结果,可以提供基于地面的GW测量的全局数据集,从而可以计算GW参数。这些可用于改进NWP模型。

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