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RST analysis of MSG-SEVIRI TIR radiances at the time of the Abruzzo 6 April 2009 earthquake

机译:2009年4月6日阿布鲁佐地震时MSG-SEVIRI TIR辐射的RST分析

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摘要

Space-time fluctuations of Earth's emitted Thermal Infrared (TIR) radiation have been observed from satellite months to weeks before earthquakes occurrence. The general RST approach has been proposed in order to discriminate normal (i.e. related to the change of natural factor and/or observation conditions) TIR signal fluctuations from anomalous signal transient possibly associated to earthquake occurrence. In this work RST approach is applied to the Abruzzo 6 April 2009 event (M-L=5.8) by using for the first time MSG-SEVIRI (Meteosat Second Generation -Spinning Enhanced Visible and Infrared Imager) thermal infrared observations. A validation/confutation analysis has been performed in order to verify the presence/absence of anomalous space-time TIR transients in the presence/absence of significant seismic activity. March-April 2009 has been analyzed for validation purposes. Relatively unperturbed periods (no earthquakes with M-L >= 5) have been taken for confutation. A specific TIR anomalies space-time persistence analysis as well as a cloud coverage distribution test have been introduced in order to eliminate artifacts and outliers both in the validation and confutation phases. Preliminary results show clear differences in TIR anomalies occurrence during the periods used for validation and confutation purposes. Quite clear TIR anomalies appear also to mark main tectonic lines related to the preparatory phases of others, low magnitude (M-L similar to 4) earthquakes, occurred in the area.
机译:在地震发生前的几个月到几周内,已经观测到地球发射的热红外(TIR)辐射的时空波动。为了区分正常的(即与自然因素和/或观察条件有关的)TIR信号波动与可能与地震发生有关的异常信号瞬变,已经提出了一般的RST方法。在这项工作中,RST方法通过首次使用MSG-SEVIRI(Meteosat第二代-旋转增强型可见光和红外成像仪)热红外观测而应用于2009年4月6日的阿布鲁佐事件(M-L = 5.8)。为了验证存在/不存在重大地震活动时是否存在异常时空TIR瞬变,已经进行了验证/确认分析。为了验证目的,已分析了2009年3月至4月。相对不扰动的时期(没有M-L> = 5的地震)被用于计算。为了消除验证和配置阶段的伪影和异常值,已引入了特定的TIR异常时空持久性分析以及云覆盖分布测试。初步结果表明,在用于验证和确认的期间,TIR异常发生情况存在明显差异。 TIR异常明显也似乎标志着与该地区其他地震的预备阶段有关的主要构造线,该地区发生了低级(M-L类似于4)地震。

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