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应用地球物理  2010, Vol. 7 Issue (4): 392-398    DOI: 10.1007/s11770-010-0265-x
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地震方法探测太行山山前断裂的活动特征
徐明才,高景华,荣立新,王广科,王小江
中国地质科学院地球物理地球化学勘查研究所,河北廊坊 065000
Seismic analysis of the active character of the Taihang Mountain piedmont fault
Xu Ming-Cai1, Gao Jing-Hua1, Rong Li-Xin1, Wang Guang-Ke1, and Wang Xiao-Jiang1
1. Institute of Geophysical and Geochemical Exploration CAGS, Langfang 065000, China.
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摘要 太行山山前断裂位于太行山脉与华北平原过渡地带,是华北及我国东部地区一条重要的构造带,有关该断裂带的活动性众说纷纭。为研究该断裂的活动特征,穿过石油地震探测到的太行山山前断裂布设了中浅层和浅层地震剖面,根据中浅层和浅层地震剖面探测结果,得到了太行山山前断裂的浅部和中浅层部构造特征,且浅层地震探测结果得到了钻探验证,表明该断裂仅错断了中更新世QP2早期,中更新世QP2晚期和晚更新世地层没有发生错断。为研究该断裂的深部构造特征,在该区还开展了深部地球物理调查,从深部地球物理调查结果能够推断太行山山前断裂不是岩石圈深大断裂。由此可见,在邯郸地区,太行山山前断裂不是活动断裂,也不是岩石圈深大断裂。
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徐明才
高景华
荣立新
王广科
王小江
关键词太行山山前断裂   活动特征   地震勘探   钻探验证     
Abstract: The Taihang Mountain piedmont fault is a large-scale structure zone in north and east China which cross Beijing, with the NE-NNE extent spans approximately 620 km. It is very important to determine the fault zone activity due to the close relation of active structures and earthquakes. Regarding the fault activity, there are three different opinions: 1) it is a large deep fault zone; 2) it is an active fault zone and an earthquake structure belt; and 3) it is not an earthquake structure belt. In order to ascertain the active character of the fault, the deep tectonic setting and the activity since the Quaternary were investigated using recent seismic and drilling data to make a joint interpretation. The investigation results show that the Taihang Mountain piedmont fault is not a large lithospheric fault because the early middle Pleistocene (QP2) layers are offset by the fault and the late middle Pleistocene (QP2) and late Pleistocene layers are not offset by the fault. We determine that the Taihang Mountain piedmont fault in the area is not an active fault and is also not a large lithospheric fault. This study result provides important geological and geophysical data for city planning and construction in Hebei province and, especially, has great significance for seismic hazard assessment of the capital area.
Key wordsTaihang Mountain piedmont fault   active fault   seismic exploration   drilling borehole verification   
收稿日期: 2009-10-01;
引用本文:   
徐明才,高景华,荣立新等. 地震方法探测太行山山前断裂的活动特征[J]. 应用地球物理, 2010, 7(4): 392-398.
XU Ming-Cai,GAO Jing-Hua,RONG Li-Xin et al. Seismic analysis of the active character of the Taihang Mountain piedmont fault[J]. APPLIED GEOPHYSICS, 2010, 7(4): 392-398.
 
[1] Deng, Q. D., 2002, Exploration and seismic hazard assessment of active faults in urban areas: Seismology and Geology, 24(4), 602 - 605.
[2] Han, Z. J., and Zhang, G. M., 2000, Analysis of the structural environment of the Izmit earthquake: Recent Developments in World Seismology, China Academic Journal Electronic Publishing House, Beijing.
[3] Han, Z. J., Ren, F. H., Ogawa, Y., Taniguchi, and Hitoshi,?1996, Research on the seismotectonics of the January 17, 1995, Hanshin M 7. 2 earthquake: ACTA Seismologica Sinica, 9(4), 671 - 678.
[4] Huang, J. Q., 1980, The geotectonic and the evolution in China (1: 4,000,000 Instruction of the geotectonic and the evolution map in China): Scientific Publishing House, Beijing.
[5] Jiang, W. L., and Nie, Z. S., 1984, Discussion on active characters of the piedmont fault zone of Taihang Mountain and the earthquake risk: North China Earthquake Science, 2(3), 21 - 27.
[6] Jiang, W. L., and Nie, Z. S., 1985, Discussion on the cause of the ground fissures in Handan city, Hebei province: North China Earthquake Science, 3(4), 68 - 76.
[7] Li, S. B., Liu, D. L., and Xu, J. E., 1984, Mid-strong earthquakes migration activity and the block tilt movement in the North China several earthquake belts: North China Earthquake Science, 2(4), 15 - 24.
[8] Shang, H. K., and Lu, M. L., 1985, On seismotectonics around the juncture of Shanxi, Hebei, Shandong, and Henan provinces: North China Earthquake Science, 3(3), 1 - 15.
[9] Wang, Y. B., Wang, Y., Lee, J. C., and Zhan, Y. Z., 2000, Characteristics of ground ruptures caused by the 1999 M7.3 earthquake of Jiji: Taiwan Seismology and Geology, 22(2), 97 - 103.
[10] Wang, C. Y., Zhang, X. K., Wu, Q. G., and Zhu, Z. P., 1994 Seismic evidence of detachment in North China basin: ACTA Geophysica Sinica, 37(5), 613 - 619.
[11] Xu, M. C., Gao, J. H., Liu, J. X., and Rong, L. X., 2005, Application of the seismic method to detecting active fault: Earthquake Research in China, 21(1), 17 - 23.
[12] Xu, J., Gao, Z. W., Song, C. Q., and Sun, J. B., 2000, The structural characters of the piedmont fault of Taihang mountain: Seismology and Geology, 22(2), 111 - 122.
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