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Analyzing groundwater change on a volcanic island caused by the impact of the M9 Sumatra earthquake

机译:分析苏门答腊岛M9地震造成的火山岛上的地下水变化

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Changes in groundwater level have been recognized by the earthquakes at various epicentral distances. The M9 Sumatra earthquake resulted in changes in the groundwater level, electrical conductivity, and temperature in monitoring wells on Jeju Island, South Korea. In regions of different groundwater type (basal, lower parabasal, upper parabasal, and high-level groundwater), the changes in the groundwater levels at 25 monitoring wells ranged between 4.0 and 49.5 cm; changes in the electrical conductivity at six monitoring wells ranged between 1 and 27,975 μS/cm; and the changes in water temperature at three wells ranged between 0.02 and 1.37 °C. The irregular groundwater level changes at different locations on the island due to the earthquake reflect various interactions between hydrological properties and seismological processes. The impact of the earthquake was successfully recognized via transfer function modeling between the time series of groundwater level and the tidal oscillation. On the basis of the theoretical aquifer response to the earthquake, storage coefficient estimates for aquifers, which could not be determined from the single-well pumping tests, were determined to be within the range of 1.22·10-4-3.51·10-6.
机译:地震在不同震中距离处都认识到了地下水位的变化。苏门答腊M9地震导致韩国济州岛的监测井中的地下水位,电导率和温度发生变化。在地下水类型不同的区域(基础,下基础,上基础和高水平地下水)中,25口监测井的地下水水位变化在4.0至49.5厘米之间。六个监测井的电导率变化在1至27,975μS/ cm之间;三口井的水温变化范围为0.02至1.37°C。由于地震,岛上不同位置的地下水位不规则变化反映了水文特性和地震过程之间的各种相互作用。通过地下水位时间序列和潮汐振荡之间的传递函数建模,成功识别了地震的影响。根据理论含水层对地震的反应,无法通过单井抽水试验确定的含水层储水系数估算值确定在1.22·10-4-3.51·10-6范围内。

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