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天津—北京高分辨地震折射剖面初至波走时成像
引用本文:贾宇鹏,王夫运,田晓峰,段永红,莘海亮,刘宝峰.天津—北京高分辨地震折射剖面初至波走时成像[J].西北地震学报,2012,34(4):375-382.
作者姓名:贾宇鹏  王夫运  田晓峰  段永红  莘海亮  刘宝峰
作者单位:1. 中国地震局兰州地震研究所,甘肃兰州 730000;中国地震局地球物理勘探中心,河南郑州 450002
2. 中国地震局地球物理勘探中心,河南郑州,450002
基金项目:国家自然科学基金重点项目,地震科学联合基金,中国地震局兰州地震研究所论著
摘    要:利用走时成像中的正则化反演方法对天津—北京的高分辨地震折射剖面获得的初至波资料进行成像.分析了不同的初始模型和参数变化对反演结果的影响,并采用检测板方法对最终模型的分辨进行评估,得到了天津—北京剖面的上地壳精细速度结构,给出了该地区的隐伏断层.结果显示,最终模型分辨达到5 km×1 km,部分地区更加细致;研究区域坳陷区与隆起区相间,大坳陷内部有小坳陷;结晶基底的深度变化约2~8 km,其起伏形态符合地质构造情况;断裂活动和第三系以来的壳内运动对速度结构影响较大.

关 键 词:上地壳速度结构  初至波成像  正则化反演  天津—北京剖面  高分辨地震折射剖面

Tomography of High Resolution Seismic Refraction Traveltimes in Tianjin-Beijing Profile
JIA?Yu-peng,WANG?Fu-yun,TIAN?Xiao-feng,DUAN?Yong-hong,XIN?Hai-liang and LIU?Bao-feng.Tomography of High Resolution Seismic Refraction Traveltimes in Tianjin-Beijing Profile[J].Northwestern Seismological Journal,2012,34(4):375-382.
Authors:JIA?Yu-peng  WANG?Fu-yun  TIAN?Xiao-feng  DUAN?Yong-hong  XIN?Hai-liang and LIU?Bao-feng
Institution:Lanzhou?Institute?of?Seismology?of?CEA;Geophysical?Exploration?Center?of?CEA;;Geophysical?Exploration?Center?of?CEA;;Geophysical?Exploration?Center?of?CEA;;Geophysical?Exploration?Center?of?CEA;;Geophysical?Exploration?Center?of?CEA;;Geophysical?Exploration?Center?of?CEA;
Abstract:The traveltimes tomography of first arrive waves along Tianjin-Beijing profile with high resolution is done using regularization inversion method.The impacts on the inversion results from very different starting models and inversion parameters are analyzed,the resolution of the final model is assessed by the checkboard method,and the upper crust fine structure with blind faults in the study area is obtained finally.The results show that the resolution of the final model is up to 5 km×1 km with some are more fine.The study region is alternate by depressed areas with upheaval areas,and small sags are within big ones.The depths of crystalline basement change in the range of 2-8 km and its fluctuant pattern complies with the geological tectonic characteristics.The fault activity and crustal moment since Tertiary have greater impact on the velocity structure of this region.
Keywords:Upper crust velocity structure  First arrival wave tomography  Regularized inversion  Tianjin-Beijing profile  High resolution seismic refraction profile  
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