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作 者:张彩红 谭凯 鲁小飞 李琦 李承涛 李志才[2] ZHANG Caihong;TAN Kai;LU Xiaofei;LI Qi;LI Chengtao;LI Zhicai(Key Laboratory of Earthquake Geodesy,CEA,40 Hongshance Road,Wuhan 430071,China;Geodesy Datum Department,National Geomatics Center of China,28 West-Lianhuachi Road,Beijing 100830,China)
机构地区:[1]中国地震局地震大地测量重点实验室,武汉市430071 [2]国家基础地理信息中心测绘基准部,北京市100830
出 处:《大地测量与地球动力学》2023年第1期42-45,60,共5页Journal of Geodesy and Geodynamics
基 金:国家重点研发计划(2018YFC1503605)。
摘 要:首次构建2021年玛多M_(W)7.3地震三维有限元模型,分析同震滑动分布特征。首先解算高精度GNSS同震形变观测数据;然后建立玛多地震三维有限元模型,并用弹性半空间Okada模型验证其准确性;最后以40个近场和远场GNSS同震形变观测数据为约束,利用最小二乘法反演玛多地震同震滑动分布模型,从而模拟同震位移。结果表明,玛多地震引起的破裂主要分布在野马滩和黄河乡附近,最大滑动值约为3.4 m。该结果与现场考察结果一致,能够很好地解释GNSS同震形变观测数据。For the first time,we construct a three-dimensional finite element model for the 2021 Madoi M_(W)7.3 earthquake to analyze the features of coseismic slip distribution.First,we process the high-precision GNSS coseismic deformation observations.Then,we construct a three-dimensional finite element model,which is validated by the elastic half-space Okada model.Finally,we invert the coseismic slip distribution model of the Madoi earthquake using the least squares method,by constraining 40 near-field and far-field GNSS coseismic displacement observations.The results show that the Madoi earthquake reptures with a maximum value of about 3.4 m are mainly distributed near the area of Yematan and Huanghe country.The results are consistent with the field investigation and can well explain the GNSS coseismic deformation observations.
分 类 号:P315[天文地球—地震学] P228[天文地球—固体地球物理学]
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