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Analyzing groundwater level anomalies in a fault zone in Korea caused by local and offshore earthquakes

机译:韩国故障区地下水位异常分析地下地震造成的地下水位异常

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This study analyzed groundwater level changes in a monitoring well located in Korea's Yangsan fault zone, induced by local (Gyeongju and Pohang) earthquakes in Korea and offshore earthquakes around the world. Among offshore earthquakes, the M-W 7.3 Honshu earthquake changed raw groundwater level of a maximum of 10.3 cm. The groundwater level data were analyzed by using the Hilbert-Huang transform (HHT), modified moving average (MMA), and simple subtraction (SS) methods. In the first stage, earthquake-induced groundwater level changes were identified using the MMA and SS methods because the SS and MMA methods may excellently be used for identifying earthquake-induced groundwater level anomalies as a convenient way to identify abnormal fluctuations. Then, the HHT technique was applied to the 2016-2017 groundwater level data for comparison with the MMA and SS methods. The HHT method has been proven to be the most accurate method for detecting the effects of earthquakes on groundwater levels. The differences of water levels analyzed by the HHT method and the other two methods resulted in between 0.4 and 1.9 cm, showing closer levels between the HHT and SS methods.
机译:本研究分析了位于韩国阳山断层区的监测井的地下水位变化,由当地(京邦和蒲丈)韩国地震引发,世界各地的近海地震。在海上地震中,M-W 7.3 Honshu地震发生了最大10.3厘米的原始地下水位。通过使用Hilbert-Huang变换(HHT),改进的移动平均(MMA)和简单的减法(SS)方法来分析地下水位数据。在第一阶段,使用MMA和SS方法鉴定地震诱导的地下水位变化,因为SS和MMA方法可以很好地用于识别地震诱导的地下水位异常作为识别异常波动的方便方法。然后,将HHT技术应用于2016-2017地下水位数据,以与MMA和SS方法进行比较。已被证明HHT方法是检测地震对地下水位影响的最准确的方法。 HHT方法和其他两种方法分析的水位的差异导致0.4-1.9厘米,显示HHT和SS方法之间的更近的水平。

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