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Crustal dynamics of Mount Vesuvius from 1998 to 2005: Effects on seismicity and fluid circulation

机译:1998年至2005年维苏威火山地壳动力学:对地震活动和流体循环的影响

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This paper presents the results of hydrogeochemical and seismological studies carried out at Mount Vesuvius during the period June 1998 to December 2005. Hydrogeochemical data show the occurrence of slowly varying long-term variations in the total dissolved salts and bicarbonate contents of the groundwaters, accompanied by a general decline in water temperatures. The temporal distributions of air temperature and rainfall in the Vesuvius area suggest that these variations do not depend on changes in the hydrological regime. The changes in the geochemical parameters are accompanied by slight variations in both the seismicity rate and energy release. A further relationship between seismic activity and fluid discharge rate is highlighted by a particular episode that occurred in August 2005, when a soil thermal anomaly was observed a few weeks before the occurrence of a very shallow earthquake. Moment tensor analysis of this earthquake suggests that the most plausible source mechanism is a shear faulting combined with the opening of tensile crack. This feature is often observed in volcanic areas and it is usually related to fluid- and/or gas-driven rock fracturing. The observed seismological, hydrological, and geochemical temporal changes are interpreted not as changes of the volcanic system but in terms of an external forcing as identified in the variation of the regional and local stress field acting on the volcano. This study has inferences onto the evaluation of the state of activity of volcanic systems and the eventual detection of unrest phenomena.
机译:本文介绍了1998年6月至2005年12月在维苏威火山进行的水文地球化学和地震学研究的结果。水文地球化学数据表明,地下水中总溶解盐和碳酸氢盐含量的长期变化是缓慢变化的,并伴随着水温普遍下降。维苏威火山地区气温和降雨的时间分布表明,这些变化不取决于水文状况的变化。地球化学参数的变化伴随着地震活动率和能量释放的微小变化。 2005年8月发生的一个特殊事件突出显示了地震活动与流体排放速率之间的进一步关系,当时在非常浅的地震发生几周前就观测到土壤热异常。地震的矩张量分析表明,最合理的震源机制是剪切断裂与张裂裂缝的结合。该特征通常在火山地区观察到,通常与流体和/或气体驱动的岩石压裂有关。观察到的地震,水文和地球化学的时间变化不解释为火山系统的变化,而是根据作用在火山上的区域和局部应力场的变化所确定的外部强迫。这项研究推断出火山系统活动状态的评估以及对动乱现象的最终发现。

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