Earth Sciences Department, Sapienza University of Rome, P.le Aldo Moro 5, 00185, Rome, Italy.
Consiglio Nazionale Delle Ricerche, IGAG, Rome, Italy.
Sci Rep. 2020 Oct 20;10(1):17850. doi: 10.1038/s41598-020-74991-0.
Chemical and physical responses of groundwater to seismicity have been documented for thousands of years. Among the waves produced by earthquakes, Rayleigh waves can spread to great distances and produce hydrogeological perturbations in response to their passage. In this work, the groundwater level, which was continuously recorded in a monitoring well in Central Italy between July 2014 and December 2019, exhibited evident responses to dynamic crustal stress. In detail, 18 sharp variations of the groundwater level due to worldwide M ≥ 6.5 earthquakes were observed. Apart from earthquakes that occurred in Papua New Guinea and those with a hypocentral depth > 150 km, all far away M ≥ 7.6 earthquakes produced impulsive oscillations of groundwater. As the earthquake magnitude decreased, only some earthquakes with 6.5 ≤ M < 7.6 caused groundwater level perturbations, depending on the data acquisition frequency and epicentral distance from the monitoring well. A clear correlation between earthquake distance and magnitude in hydrogeological responses was found. Our results shed light on the hydrosensitivity of the study site and on the characteristics of fractured aquifer systems. Detecting the water table variations induced by distant earthquakes is another step towards a correct identification of (preseismic) hydrogeological changes due to near-field seismicity.
地下水对地震的化学和物理响应已有数千年的记录。在地震产生的波中,瑞利波可以传播到很远的距离,并在其传播过程中产生水文地质扰动。在这项工作中,意大利中部一个监测井中连续记录的地下水位对动态地壳应力表现出明显的响应。具体来说,观测到了 18 次由于全球 M ≥ 6.5 级地震引起的地下水位急剧变化。除了发生在巴布亚新几内亚和震源深度 > 150 公里的地震外,所有远距离 M ≥ 7.6 级的地震都引起了地下水的脉冲振荡。随着地震震级的降低,只有一些 6.5 ≤ M < 7.6 级的地震会引起地下水位的波动,这取决于数据采集频率和监测井与震中的距离。在水文地质响应中,发现了地震距离和震级之间的明显相关性。我们的结果阐明了研究地点的水文敏感性以及裂隙含水层系统的特征。检测由远距离地震引起的地下水位变化是正确识别近场地震活动性引起的(震前)水文地质变化的又一步。