Crustal thickness and Poisson's ratio beneath the middle-southern segment of Tan-Lu fault zone

被引:1
|
作者
Chen LiYi [1 ]
Wang WeiLai [1 ]
Cai GuangYao [1 ]
机构
[1] China Earthquake Adm, Inst Geophys, Beijing 100081, Peoples R China
来源
关键词
The middle-southern segment of Tan-Lu fault zone; H-kappa stacking; Crustal thickness; Poisson's ratio; M 8. 5 Tancheng earthquake; WAVE VELOCITY STRUCTURE; TANCHENG-LUJIANG FAULT; MOHO DEPTH; P-WAVE; DENSITY STRUCTURE; METAMORPHIC BELT; SEISMIC VELOCITY; OROGENIC BELT; CHINA; NORTH;
D O I
10.6038/cjg2022Q0414
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The middle-southern segment of the Tan-Lu fault zone (TLFZ) is related to the subduction of the west Pacific plate and the destruction of the North China Craton. The study of deep structure in the TLFZ is of great significance for understanding the tectonic evolution of the TLFZ and the seismogenic mechanism of strong earthquakes. In this study, we use data from dense seismic arrays to estimate the crustal thickness and Poisson's ratio beneath the middle-southern segment of the TLFZ by H-kappa stacking method. The results show that the distribution of crustal thickness can be divided into three segments with Lujiang and Xinyi as the subsection points. The segmentation characteristics in the north-south direction are consistent with that of the geological structure. In the southern segment, the crustal thickness on the west side of the TLFZ is about 5 km greater than that on the east side. In the middle segment, the crustal thickness difference between the two sides of the TLFZ decreases to about 3 km. In the northern segment, the crustal thickness is characterized by "thick -thin-thick" and the Moho interface is uplifted beneath the TLFZ. The high Poisson's ratio beneath the TLFZ is presumed to be the result of thermal and chemical erosion caused by mantle material. According to the Airy isostasy theory, we concluded that: (1) In the southern segment, the crustal thickness is related to the elevation, which largely conforms to the Airy isostasy model. (2) In the middle segment, the elevations on both sides of the TLFZ are close but the crustal thicknesses are quite different, which indicates that the deep structure does not conform to the Airy isostasy model, which may be related to the higher density lithosphere of the North China Craton on the west side of the TLFZ than that of the Yangtze Craton on the east side, for high -density lithosphere can produce a downward "drag force" which leads to a deeper Moho interface than that by thoery. (3) In the northern segment, the Moho interface is deeper than that based on the Airy isostasy model. The deep structure of this area is similar to that of the west side of TLFZ in the middle segment, which belongs to the North China Craton. Within the rupture zone of the M8. 5 Tancheng earthquake, there are three types of structural features: uneven transition of Moho interface, the boundary of active blocks, bifurcation and intersection of faults. These structural features are beneficial for stress concentration, thus leading to the occurrence of the M8. 5 Tancheng earthquake in 1668.
引用
收藏
页码:1036 / 1049
页数:14
相关论文
共 83 条
  • [11] Geophysical evidence on segmentation of the Tancheng-Lujiang fault and its implications on the lithosphere evolution in East China
    Deng, Yangfan
    Fan, Weiming
    Zhang, Zhongjie
    Badal, Jose
    [J]. JOURNAL OF ASIAN EARTH SCIENCES, 2013, 78 : 263 - 276
  • [12] Dong Shuwen, 2011, Dizhi Xuebao, V85, P612
  • [13] 2-D P-wave velocity structure of lithosphere in the North China tectonic zone: Constraints from the Yancheng-Baotou deep seismic profile
    Duan YongHong
    Liu BaoJin
    Zhao JinRen
    Liu BaoFeng
    Zhang ChengKe
    Pan SuZhen
    Lin JiYan
    Guo WenBin
    [J]. SCIENCE CHINA-EARTH SCIENCES, 2015, 58 (09) : 1577 - 1591
  • [14] Ernst W G., 1995, INT GEOL REV, V37, P191
  • [15] Feng Rui, 1985, Acta Seismologica Sinica, V7, P143
  • [16] Gao W M., 1988, EARTHQUAKE RES CHINA, V4, P15
  • [17] Study of crustal thickness and Poisson ratio of the North China Craton
    Ge Can
    Zheng Yong
    Xiong Xiong
    [J]. CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2011, 54 (10): : 2538 - 2548
  • [18] Segmentation of crustal structure beneath the middle-south segment of Tan-Lu Fault Zone
    He YiCheng
    Fan XiaoPing
    Zhao QiGuang
    Huo ZhuQing
    Yang CongJie
    Zheng LeiMing
    Qian Hao
    Zheng Tuo
    [J]. CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2021, 64 (09): : 3139 - 3153
  • [19] High geo-stress distribution and high geo-stress concentration area models for eastern margin of Qinghai-Tibet plateau
    Huang RunQiu
    Wang YunSheng
    Wang ShiTian
    Li YuSheng
    [J]. SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2011, 54 : 154 - 166
  • [20] Institute of Geology China Earthquake Administration, 1987, TANCH EARTHQ