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Geosphere coupling and hydrothermal anomalies before the 2009 M-w 6.3 L'Aquila earthquake in Italy

机译:2009年意大利拉奎拉6.3级地震前的地层耦合和热液异常

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摘要

The earthquake anomalies associated with the 6 April 2009 M-w 6.3 L'Aquila earthquake have been widely reported. Nevertheless, the reported anomalies have not been so far synergically analyzed to interpret or prove the potential lithosphere-coversphere-atmosphere coupling (LCAC) process. Previous studies on b value (a seismicity parameter from Gutenberg-Richter law) are also insufficient. In this work, the spatiotemporal evolution of several hydrothermal parameters related to the coversphere and atmosphere, including soil moisture, soil temperature, near-surface air temperature, and precipitable water, was comprehensively investigated. Air temperature and atmospheric aerosol were also statistically analyzed in time series with ground observations. An abnormal enhancement of aerosol occurred on 30 March 2009 and thus proved quasi-synchronous anomalies among the hydrothermal parameters from 29 to 31 March in particular places geo-related to tectonic thrusts and local topography. The three-dimensional (3-D) visualization analysis of b value revealed that regional stress accumulated to a high level, particularly in the L'Aquila basin and around regional large thrusts. Finally, the coupling effects of geospheres were discussed, and a conceptual LCAC mode was proposed to interpret the possible mechanisms of the multiple quasi-synchronous anomalies preceding the L'Aquila earthquake. Results indicate that CO2-rich fluids in deep crust might have played a significant role in the local LCAC process.
机译:广泛报道了与2009年4月6日M-w 6.3拉奎拉地震有关的地震异常。但是,到目前为止,尚未对所报告的异常进行协同分析以解释或证明潜在的岩石圈-覆盖层-大气耦合(LCAC)过程。先前对b值(古登堡-里希特定律的地震活动性参数)的研究也不足。在这项工作中,全面研究了与覆盖层和大气有关的几个热液参数的时空演变,包括土壤湿度,土壤温度,近地表气温和可沉淀水。空气温度和大气气溶胶也与地面观测结果按时间序列进行了统计分析。 2009年3月30日发生了气溶胶异常增强,因此在3月29日至31日的热液参数中特别是与构造逆冲和局部地形有关的地方,证明了准同步异常。 b值的三维(3-D)可视化分析表明,区域应力累积到很高的水平,尤其是在拉奎拉盆地和区域大逆冲附近。最后,讨论了地球圈的耦合效应,并提出了一种概念性的LCAC模式来解释拉奎拉地震之前多个准同步异常的可能机制。结果表明,深地壳中富含CO2的流体可能在局部LCAC过程中发挥了重要作用。

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