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Synchronization Signals in the Variations of Groundwater Chemical Composition in Kamchatka in Relation to the Strong (MW ≥ 6.6) Earthquakes

机译:堪察加地下水化学成分变化中的同步信号与强(mW≥6.6)地震的关系

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摘要

We consider the results of the statistical analysis using the methods of the principal components and canonical coherences applied to the processing of long (1986–2005) time series of hydrogeochemical observations at the flowing wells and springs in Kamchatka. The time-frequency diagrams of the evolution of informative statistics characterizing the collective behavior of multidimensional hydrogeochemical time series are constructed, and the time intervals and frequency bands where the synchronization signals (Lyubushin, 2007) appear are identified. The features of their occurrence are analyzed in comparison to the strong (Mw = 6.6–7.8) local earthquakes. It is found that such signals in the measurements of some multidimensional time series can arise both before and after earthquakes, i.e. these signals have a precursory (P2) and postseismic (P3) character.
机译:我们考虑使用主要成分和规范相干性方法进行统计分析的结果,该方法适用于堪察加半岛流动井和泉水中长期(1986-2005年)水文地球化学观测的时间序列。构造了表征多维水文地球化学时间序列集体行为的信息统计演变的时频图,并确定了出现同步信号的时间间隔和频带(Lyubushin,2007)。与强地震(Mw = 6.6–7.8)相比,分析了它们的发生特征。已发现,在某些多维时间序列的测量中,此类信号可能在地震之前和之后出现,即这些信号具有先兆(P2)和震后(P3)特征。

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