首页 | 本学科首页   官方微博 | 高级检索  
     检索      

张家口-渤海断裂带分段运动变形特征分析
引用本文:陈长云.张家口-渤海断裂带分段运动变形特征分析[J].中国地震研究,2017,31(1):66-78.
作者姓名:陈长云
作者单位:中国地震局第一监测中心, 天津 300180
基金项目:This project was sponsored by the Specific Fund of Fundamental Research, Institute of Geophysics, China Earthquake Administration (DQJB16B19).
摘    要:We have collected GPS data in the period of 1999-2007 from the Crustal Motion Observation Network of China along the Zhangjiakou-Bohai fault and its adjacent regions to study the characteristics of present-day crustal horizontal motion velocities in the research zone.Strain rate components are computed in the spheric coordinate system by the least square collocation method.According to the spatial distribution of the principal strain rate,dilation rate and maximum shear strain rate derived from GPS measurements,this paper analyses the deformation of the subordinary faults of the Zhangjiakou-Bohai fault.The principal compression strain rates are apparently greater than the principal extension strain rates.The larger shear strain rate is mainly in and around the Xianghe,Wenan and Tangshan areas in Hebei Province.According to the profiles across different segments of the Zhangjiakou-Bohai fault,the three segments glong the Zhangjiakou-Bohai fault show an obviously left-lateal strike-slip and compression characteristics.By analysis of the motion characteristics of the blocks,e.g.the Yanshan block,North China Plain block,Ordos block,and Ludong-Huanghai block in and around the North China region,this paper speculates that the dynamics of the motion styles of Zhangjiakou-Bohai fault may directly come from the relative movement between the Yanshan block and the North China plain block,and the ultimate dynamics may be the results of the collison between Indian plate and Eurasian plate,and the persistent northeastward extrusion of the Indian plate.

关 键 词:张渤带  地壳形变  速度场  应变场  左旋走滑
收稿时间:2015/7/14 0:00:00
修稿时间:2015/9/10 0:00:00

Analysis of the Motion and Deformation Characteristics along the Zhangjiakou-Bohai Fault
Chen Changyun.Analysis of the Motion and Deformation Characteristics along the Zhangjiakou-Bohai Fault[J].Earthquake Research in China,2017,31(1):66-78.
Authors:Chen Changyun
Institution:First Crustal Monitoring and Application Center, CEA, Tianjin 300180, China
Abstract:We have collected GPS data in the period of 1999-2007 from the Crustal Motion Observation Network of China along the Zhangjiakou-Bohai fault and its adjacent regions to study the characteristics of present-day crustal horizontal motion velocities in the research zone. Strain rate components are computed in the spheric coordinate system by the least square collocation method. According to the spatial distribution of the principal strain rate, dilation rate and maximum shear strain rate derived from GPS measurements, this paper analyses the deformation of the subordinary faults of the Zhangjiakou-Bohai fault. The principal compression strain rates are apparently greater than the principal extension strain rates. The larger shear strain rate is mainly in and around the Xianghe, Wen''an and Tangshan areas in Hebei Province. According to the profiles across different segments of the Zhangjiakou-Bohai fault, the three segments glong the Zhangjiakou-Bohai fault show an obviously left-lateal strike-slip and compression characteristics. By analysis of the motion characteristics of the blocks, e.g. the Yanshan block, North China Plain block, Ordos block, and Ludong-Huanghai block in and around the North China region, this paper speculates that the dynamics of the motion styles of Zhangjiakou-Bohai fault may directly come from the relative movement between the Yanshan block and the North China plain block, and the ultimate dynamics may be the results of the collison between Indian plate and Eurasian plate, and the persistent northeastward extrusion of the Indian plate.
Keywords:Zhangjiakou-Bohai fault zone  Crustal deformation  Velocity filed  Strain rate filed  Left-lateral strike-slip
本文献已被 CNKI 等数据库收录!
点击此处可从《中国地震研究》浏览原始摘要信息
点击此处可从《中国地震研究》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号