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Apparent permeability variation of underground water aquifer induced by an earthquake: A case of the Zhouzhi well and the 2008 Wenchuan earthquake

机译:地震诱发地下水含水层的表观渗透率变化:以周至井和2008年汶川地震为例

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Abstract Taking the M~(2) wave as calibration signals, we extract the phase shifts of the water level relative to the Earth tide in the Zhouzhi well by utilizing the cross-correlation function. And we further obtain the apparent permeability variation in the aquifer of the Zhouzhi well in 2008. Comparison with the commonly used tidal analysis software Baytap-G shows that phase shifts obtained by cross-correlation function are more stable. The resulting apparent permeability of the Zhouzhi well aquifer fluctuates with time, indicating it is a dynamically controlled parameter. The 2008 Wenchuan earthquake caused the apparent permeability increasing drastically, which is interpreted as the combination effects of effective stress changes and the barriers removing in the flow channel due to seismic wave pressure pulse. After the Wenchuan earthquake, the effective stress began to recover and the impurities deposited gradually, causing the apparent permeability to decrease a month later and almost recover to the pre-earthquake level in six months.
机译:摘要以M〜(2)波为标定信号,利用互相关函数提取周至井水位相对于大潮的相移。并进一步获得了2008年周至井含水层的表观渗透率变化。与常用的潮汐分析软件Baytap-G进行比较表明,互相关函数获得的相移更为稳定。周至井含水层的表观渗透率随时间波动,表明它是一个动态控制的参数。 2008年汶川地震导致表观渗透率急剧增加,这被解释为有效应力变化和地震波压力脉冲在流道中去除障碍的综合作用。汶川地震后,有效应力开始恢复,杂质逐渐沉积,导致表观渗透率在一个月后下降,并在六个月内几乎恢复到地震前的水平。

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