Chiarabba Claudio, De Gori Pasquale, Valoroso Luisa, Petitta Marco, Carminati Eugenio
INGV, Istituto Nazionale di Geofisica e Vulcanologia, Rome, Italy.
Dipartimento di Scienze della Terra, Sapienza University of Rome, Rome, Italy.
Sci Rep. 2022 Aug 26;12(1):14597. doi: 10.1038/s41598-022-18688-6.
How large earthquakes are triggered is a key question in Earth science, and the role played by fluid pressure seems to be crucial. Nevertheless, evaluation of involved fluid volumes is seldom investigated, if not unaccounted for. Moreover, fluid flow along fault zones is a driving factor for seismicity migration, episodic heat and chemical transport. Here we show that time repeated (4D) seismic tomography resolves changes of V and V/V during the Mw6.2 2009 L'Aquila normal faulting sequence, that indicate a post-failure fluid migration from hypocentral depths to the surface, with a volume estimated between 5 and 100 × 10 m rising at rates up to 100 m/day. This amount inferred by tomograms is surprisingly consistent with the about 50 × 10 m surplus water volume additionally measured at spring discharge, spread in time and space along the 700 km-wide regional carbonate fractured aquifer. Fluids were pushed-up within a huge volume across the fault and expelled from the area of large coseismic slip. Such quantities of fluids liberated during earthquakes add unprecedented constraints to the discussion on the role of fluids during and possibly before earthquake, as well as to the potential impact on the pristine high-quality drinkable groundwater, possibly affecting the biodiversity of groundwater dependent ecosystems too.
大地震是如何引发的是地球科学中的一个关键问题,流体压力所起的作用似乎至关重要。然而,对所涉及的流体体积的评估很少被研究,即便不是完全被忽视。此外,沿断裂带的流体流动是地震活动迁移、间歇性热传输和化学物质传输的一个驱动因素。在此我们表明,时间重复(四维)地震层析成像解析了2009年拉奎拉Mw6.2正断层序列期间V和V/V的变化,这表明震后流体从震源深度向地表迁移,估计有5至100×10立方米的流体以高达100米/天的速率上升。层析成像推断出的这个量与在泉水流量中额外测量到且在700千米宽的区域碳酸盐岩裂隙含水层中沿时间和空间分布的约50×10立方米的多余水量惊人地一致。流体在一个巨大的体积范围内被推过断层并从同震大滑动区域排出。地震期间释放出的如此大量的流体为关于流体在地震期间以及可能在地震之前所起作用的讨论,以及对原始优质可饮用地下水的潜在影响(这也可能影响依赖地下水的生态系统中的生物多样性)增加了前所未有的限制条件。