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Spatial and temporal changes of groundwater level induced by thrust faulting

机译:逆冲断层引起的地下水位的时空变化

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摘要

Changes of groundwater level, ranging from a fall of 11.10 m to a rise of 7.42 m, induced by thrust faulting during the 1999 M-w 7.6, Chi-Chi earthquake have been recorded in 276 monitoring wells in Taiwan. Most coseismic falls appeared near the seismogenic fault as well as other active faults, while coseismic rises prevailed away from the fault. Coseismic groundwater level rises and falls correlated fairly well with hypocentral distance in the vicinity of the thrust fault. We found a major difference of coseismic changes in wells of different depths at most multiple-well stations. The recovery process of coseismic groundwater level changes is associated with the confining condition of the aquifer. Cross-formational flow is likely to play an important role in groundwater level changes after the earthquake. In the hanging wall of the thrust fault, an abnormal decline of groundwater level was observed immediately before the earthquake. The underlying mechanism of the unique preseismic change warrants further investigation.
机译:在台湾的276口监测井中,记录了1999年Chi-Chi M-w 7.6地震中逆冲断层引起的地下水位变化,从下降11.10 m到上升7.42 m。大多数同震坠落都出现在地震成因断层和其他活动断层附近,而同震上升则普遍出现在断层附近。在逆冲断层附近,同震性地下水位的上升和下降与距震中距离的关系相当好。我们发现,在大多数多井站,不同深度的井的同震变化存在很大差异。同震地下水位变化的恢复过程与含水层的封闭条件有关。地震后跨形态流动可能在地下水位变化中起重要作用。在推力断层的悬挂壁上,地震前夕观测到地下水位异常下降。独特的地震变化的潜在机制值得进一步研究。

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