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Surface waves magnitude estimation from ionospheric signature of Rayleigh waves measured by Doppler sounder and OTH radar

机译:从多普勒发声器和OTH雷达测量的瑞利波电离层特征的表面波幅度估计

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Surface waves emitted after large earthquakes are known to induce atmospheric infrasonic waves detectable at ionospheric heights using a variety of techniques, such as high frequency (HF) Doppler, global positioning system (GPS), and recently over-the-horizon (OTH) radar. The HF Doppler and OTH radar are particularly sensitive to the ionospheric signature of Rayleigh waves and are used here to show ionospheric perturbations consistent with the propagation of Rayleigh waves related to 28 and 10 events, with a magnitude larger than 6.2, detected by HF Doppler and OTH radar respectively. A transfer function is introduced to convert the ionospheric measurement into the correspondent ground displacement in order to compare it with classic seismometers. The ground vertical displacement, measured at the ground by seismometers, and measured at the ionospheric altitude by HF Doppler and OTH radar, is used here to compute surface wave magnitude. The ionospheric surface wave magnitude (M s iono ) proposed here introduces a new way to characterize earthquakes observing the signature of surface Rayleigh waves in the ionosphere. This work proves that ionospheric observations are useful seismological data to better cover the Earth and to explore the seismology of the Solar system bodies observing the ionosphere of other planets.
机译:已知大地震后发出的表面波用于使用各种技术,例如高频(HF)多普勒,全球定位系统(GPS),最近过度地平线(OTH)雷达,诱导在电离层高度下检测到的大气速率波浪。 HF多普勒和OTH雷达对瑞利波的电离层签名特别敏感,并且这里用于显示与28和10个事件相关的瑞利波的传播一致的电离层扰动,其由HF多普勒检测到的大于6.2,并且雷达分别。引入传递函数以将电离层测量转换为对应的地面位移,以便将其与经典的地震仪进行比较。通过地震仪测量的地面垂直位移,并通过HF多普勒和OTH雷达在电离层高度测量,以计算表面波幅度。这里提出的电离层表面波幅度(M S IONO)介绍了一种新的方式来表征地震观察电离层中表面瑞利波签名的地震。这项工作证明,电离层观察是有用的地震数据,以更好地覆盖地球并探索观察其他行星电离层的太阳系体的地震学。

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