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New insights into earthquake precursors from InSAR

机译:InSAR对地震前兆的新见解

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摘要

We measured ground displacements before and after the 2009 L’Aquila earthquake using multi-temporal InSAR techniques to identify seismic precursor signals. We estimated the ground deformation and its temporal evolution by exploiting a large dataset of SAR imagery that spans seventy-two months before and sixteen months after the mainshock. These satellite data show that up to 15 mm of subsidence occurred beginning three years before the mainshock. This deformation occurred within two Quaternary basins that are located close to the epicentral area and are filled with sediments hosting multi-layer aquifers. After the earthquake, the same basins experienced up to 12 mm of uplift over approximately nine months. Before the earthquake, the rocks at depth dilated, and fractures opened. Consequently, fluids migrated into the dilated volume, thereby lowering the groundwater table in the carbonate hydrostructures and in the hydrologically connected multi-layer aquifers within the basins. This process caused the elastic consolidation of the fine-grained sediments within the basins, resulting in the detected subsidence. After the earthquake, the fractures closed, and the deep fluids were squeezed out. The pre-seismic ground displacements were then recovered because the groundwater table rose and natural recharge of the shallow multi-layer aquifers occurred, which caused the observed uplift.
机译:我们使用多时相InSAR技术测量了地震前兆信号,从而测量了2009年拉奎拉地震前后的地面位移。我们通过利用跨越主震前72个月和震后16个月的大型SAR图像数据集估算了地面变形及其时间演变。这些卫星数据显示,在主震发生的前三年开始,高达15毫米的沉陷发生了。这种变形发生在两个位于靠近震中区的第四纪盆地内,并充满了沉积有多层含水层的沉积物。地震后,这些盆地在大约九个月的时间内经历了高达12毫米的隆起。地震前,深处的岩石膨胀了,裂缝开了。因此,流体迁移到膨胀的体积中,从而降低了碳酸盐构造和盆地内与水文联系的多层含水层中的地下水位。这个过程引起了盆地内细颗粒沉积物的弹性固结,导致了沉降的发现。地震后,裂缝闭合,深层流体被挤出。然后恢复了地震前的地面位移,因为地下水位上升并且浅层多层含水层发生了自然补给,这引起了观测到的隆升。

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