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Non-parametric detection of atmospheric radon concentration anomalies related to earthquakes

机译:与地震有关的大气ra浓度异常的非参数检测

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摘要

Anomalous phenomena related to earthquakes have been studied to aid in the forecasting of large earthquakes. Radon (222Rn) concentration changes are known to be one of those phenomena. Many studies have quantified radon anomalies to identify physical aspects of radon emanations related to earthquakes. Here, we apply singular spectrum transformation, non-parametric analysis to estimate change points in time series, to atmospheric radon concentration. From 10 years of data from continuous observation of the atmospheric radon concentration over northeastern Japan and Hokkaido, we identify anomalies in the atmospheric radon concentration related to the moment releases of large earthquakes. Compared with a conventional model-based method, the singular spectrum transformation method identifies more anomalies. Moreover, we also find that change points in the atmospheric radon concentration prior to the 2011 Tohoku-Oki earthquake (Mw 9.0; 11 Mar. 2011, N38.1°, E142.9°) coincided with periods of other anomalous precursory phenomena. Our results indicate that singular spectrum transformation can be used to detect anomalies in atmospheric radon concentration related to the occurrences of large earthquakes.
机译:已经研究了与地震有关的异常现象,以帮助预测大地震。 known( 222 Rn)浓度变化是其中一种现象。许多研究已经量化了ra异常,以识别与地震有关的ra释放的物理方面。在这里,我们应用奇异频谱变换,非参数分析来估计时间序列中的变化点,以估算大气中的don浓度。通过连续观察日本东北部和北海道的大气ra浓度的10年数据,我们确定了与大地震瞬间释放有关的大气ra浓度异常。与传统的基于模型的方法相比,奇异频谱变换方法可识别更多异常。此外,我们还发现,在2011年东北冲地震(Mw 9.0; 2011年3月11日,N38.1°,E142.9°)之前,大气change浓度的变化点与其他异常前兆现象的时期相吻合。我们的结果表明,奇异频谱变换可用于检测与大地震发生有关的大气ra浓度异常。

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