Far-field coseismic gravity changes related to the 2015 MW7.8 Nepal (Gorkha) earthquake observed by superconducting gravimeters in mainland China

IF 2.9 3区 地球科学
LeLin Xing, ZiWei Liu, JianGang Jia, ShuQing Wu, ZhengSong Chen, XiaoWei Niu
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引用次数: 2

Abstract

Using data from five SGs at four stations in mainland China, obvious permanent gravity changes caused by the 2015 MW 7.8 Nepal (Gorkha) earthquake were detected. We analyzed the gravity effects from ground vertical deformation (VD) using co-site continuous GPS (cGPS) data collocated at the Lijiang and the Wuhan station, and hydrological effects using GLDAS models and groundwater level records. After removing these effects, SG observations before and after the earthquake revealed obvious permanent gravity changes: −3.0 μGal, 7.3 μGal and 8.0 μGal at Lhasa, Lijiang and Wuhan station, respectively. We found that the gravity changes cannot be explained by the results of dislocation theory.

Abstract Image

中国大陆超导重力仪观测的2015年尼泊尔(廓尔喀)MW7.8地震远场同震重力变化
利用中国大陆4个站点的5个SGs数据,探测到2015年尼泊尔(廓尔喀)7.8级地震引起的明显的永久性重力变化。利用丽江站和武汉站的连续GPS (cGPS)数据分析了地面垂直变形(VD)的重力效应,利用GLDAS模型和地下水位记录分析了水文效应。排除这些影响后,SG观测结果显示,地震前后的重力变化明显,拉萨、丽江和武汉站的重力变化分别为−3.0 μGal、7.3 μGal和8.0 μGal。我们发现重力的变化不能用位错理论的结果来解释。
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来源期刊
Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
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17.20%
发文量
174
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