地震地质 ›› 2021, Vol. 43 ›› Issue (6): 1398-1411.DOI: 10.3969/j.issn.0253-4967.2021.06.004
刘兴旺1,2)(), 袁道阳3), 姚赟胜1,2), 邹小波1)
收稿日期:
2020-11-06
修回日期:
2021-06-01
出版日期:
2021-12-20
发布日期:
2022-01-29
作者简介:
刘兴旺, 男, 1980年生, 2017年于兰州大学获第四纪地质学专业博士学位, 副研究员, 主要从事活动构造及构造地貌等方面的研究工作, 电话: 0931-8272112, E-mail: lxw_27@163.com。
基金资助:
LIU Xing-wan1,2)(), YUAN Dao-yang3), YAO Yun-sheng1,2), ZOU Xiao-bo1)
Received:
2020-11-06
Revised:
2021-06-01
Online:
2021-12-20
Published:
2022-01-29
摘要:
三危山断裂位于青藏高原北缘NW向扩展的前缘位置, 其最新地震活动反映了高原北部地区的构造变形特征。文中通过遥感影像解译、 野外实地调查、 古地震探槽及光释光年代样品测试, 对三危山断裂敦煌段的古地震活动特征开展了研究。结果表明, 断裂晚更新世以来发生过2次古地震事件, 事件E1发生的年代约为距今(35.1±3.7)~(36.7±4.1)ka; 事件E2发生的年代约为距今(76.5±8.8)~(76.7±8.3)ka。三危山断裂晚更新世以来的垂直滑动速率为(0.03±0.01)mm/a, 相应的缩短速率为(0.09±0.01)mm/a。综合前人的研究结果, 认为三危山断裂的地震活动具有分段性特征, 中段、 东段可能具有独立破裂的能力, 也存在与敦煌段发生级联破裂的特征, 复发间隔约为40ka, 根据经验公式估算三危山断裂可能发生的震级范围为 MW7.1 ~7.5。
中图分类号:
刘兴旺, 袁道阳, 姚赟胜, 邹小波. 三危山断裂敦煌段古地震活动特征[J]. 地震地质, 2021, 43(6): 1398-1411.
LIU Xing-wan, YUAN Dao-yang, YAO Yun-sheng, ZOU Xiao-bo. PALEOEARTHQUAKE CHARACTERISTICS IN DUNHUANG SEGMENT OF THE SANWEISHAN FAULT[J]. SEISMOLOGY AND EGOLOGY, 2021, 43(6): 1398-1411.
图 2 三危山断裂西段疙瘩井的断错地貌 a 断层陡坎卫星影像; b 卫星影像解译; c 断层陡坎野外照片; d 断层陡坎差分GPS测量
Fig. 2 Fault landforms at the western segment of the Sanweishan Fault at Gedajing.
样品编号 | 埋深 /m | 238U/ Bq·kg-1 | 232Th/ Bq·kg-1 | 40K/ Bq·kg-1 | 环境剂量率 /Gy·ka-1 | 等效剂量 /Gy | 年龄 /ka |
---|---|---|---|---|---|---|---|
SWSOSL-13 | 3 | 24±1.00 | 21±0.69 | 430±15.82 | 2.3±0.1 | 154.0±15.4 | 66.7±7.3 |
SWSOSL-14 | 2.6 | 16±0.75 | 19±0.65 | 433±15.83 | 2.2±0.1 | 74.2±7.1 | 34.1±3.6 |
SWSOSL-15 | 1.5 | 13±0.62 | 14±0.53 | 478±15.83 | 2.2±0.1 | 115.1±13.4 | 52.4±6.6 |
SWSOSL-16 | 1.1 | 13±0.75 | 14±0.53 | 497±15.83 | 2.3±0.1 | 104.0±9.2 | 45.5±4.6 |
SWSOSL-17 | 0.7 | 17±0.87 | 12±0.49 | 402±15.82 | 2.0±0.1 | 79.5±8.8 | 40.1±4.8 |
SWSOSL-18 | 1.9 | 20±0.87 | 21±0.69 | 399±15.82 | 2.3±0.1 | 70.7±7.5 | 32.4±3.7 |
SWSOSL-19 | 1.0 | 14±0.75 | 16±0.61 | 395±15.82 | 2.0±0.1 | 115.5±9.0 | 57.3±5.2 |
SWSOSL-20 | 0.6 | 25±1.00 | 25±0.85 | 361±12.66 | 2.3±0.1 | 63.6±5.8 | 28.1±2.9 |
SWSOSL-23 | 1.0 | 15±0.75 | 15±0.57 | 452±15.83 | 2.2±0.1 | 80.7±8.1 | 36.7±4.1 |
表1 三危山断裂光释光样品测年数据
Table1 OSL dating results of the Sanweishan Fault
样品编号 | 埋深 /m | 238U/ Bq·kg-1 | 232Th/ Bq·kg-1 | 40K/ Bq·kg-1 | 环境剂量率 /Gy·ka-1 | 等效剂量 /Gy | 年龄 /ka |
---|---|---|---|---|---|---|---|
SWSOSL-13 | 3 | 24±1.00 | 21±0.69 | 430±15.82 | 2.3±0.1 | 154.0±15.4 | 66.7±7.3 |
SWSOSL-14 | 2.6 | 16±0.75 | 19±0.65 | 433±15.83 | 2.2±0.1 | 74.2±7.1 | 34.1±3.6 |
SWSOSL-15 | 1.5 | 13±0.62 | 14±0.53 | 478±15.83 | 2.2±0.1 | 115.1±13.4 | 52.4±6.6 |
SWSOSL-16 | 1.1 | 13±0.75 | 14±0.53 | 497±15.83 | 2.3±0.1 | 104.0±9.2 | 45.5±4.6 |
SWSOSL-17 | 0.7 | 17±0.87 | 12±0.49 | 402±15.82 | 2.0±0.1 | 79.5±8.8 | 40.1±4.8 |
SWSOSL-18 | 1.9 | 20±0.87 | 21±0.69 | 399±15.82 | 2.3±0.1 | 70.7±7.5 | 32.4±3.7 |
SWSOSL-19 | 1.0 | 14±0.75 | 16±0.61 | 395±15.82 | 2.0±0.1 | 115.5±9.0 | 57.3±5.2 |
SWSOSL-20 | 0.6 | 25±1.00 | 25±0.85 | 361±12.66 | 2.3±0.1 | 63.6±5.8 | 28.1±2.9 |
SWSOSL-23 | 1.0 | 15±0.75 | 15±0.57 | 452±15.83 | 2.2±0.1 | 80.7±8.1 | 36.7±4.1 |
样品编号 | 埋深/m | 238U/ Bq·kg-1 | 232Th/ Bq·kg-1 | 40K/ Bq·kg-1 | 环境剂量率 /Gy·ka-1 | 等效剂量 /Gy | 年龄 /ka |
---|---|---|---|---|---|---|---|
SWS-1 | 2.8 | 33.4±1.1 | 27.2±3.8 | 423.0±8.8 | 2.7±0.1 | 207.1±7.03 | 76.7±8.3 |
SWS-2 | 2.6 | 17.3±5.7 | 25.7±3.0 | 419.3±4.8 | 2.32±0.1 | 177.06±16.14 | 76.2±10.5 |
SWS-3 | 1.5 | 29.1±0.4 | 37.3±2.5 | 386.6±1.5 | 2.82±0.1 | 174.18±19.84 | 61.8±9.5 |
SWS-4 | 1.0 | 33.4±0.7 | 31.8±8.6 | 388.9±13.4 | 2.78±0.1 | 155.45±4.65 | 56.0±6.0 |
SWS-5 | 0.6 | 41.8±2.3 | 25.4±3.6 | 426.4±6.4 | 2.78±0.1 | 91.77±14.02 | 33.0±6.1 |
SWS-6 | 1.9 | 38.6±1.1 | 30.6±5.7 | 454.6±2.1 | 2.83±0.1 | 216.26±11.37 | 76.5±8.8 |
SWS-7 | 1.7 | 25.7±0.3 | 27.9±6.2 | 485.0±2.0 | 2.86±0.1 | 221.46±23. | 77.3±11.4 |
SWS-8 | 0.4 | 45.9±1.1 | 34.5±2.6 | 352.1±8.5 | 2.98±0.1 | 104.64±3.03 | 35.1±3.7 |
SWS-9 | 0.3 | 23.8±0.3 | 32.7±4.5 | 452.4±10.3 | 2.87±0.1 | 41.21±1.22 | 14.4±1.5 |
表2 三危山断裂光释光样品测年数据(续)
Table2 OSL dating results of the Sanweishan Fault(continued)
样品编号 | 埋深/m | 238U/ Bq·kg-1 | 232Th/ Bq·kg-1 | 40K/ Bq·kg-1 | 环境剂量率 /Gy·ka-1 | 等效剂量 /Gy | 年龄 /ka |
---|---|---|---|---|---|---|---|
SWS-1 | 2.8 | 33.4±1.1 | 27.2±3.8 | 423.0±8.8 | 2.7±0.1 | 207.1±7.03 | 76.7±8.3 |
SWS-2 | 2.6 | 17.3±5.7 | 25.7±3.0 | 419.3±4.8 | 2.32±0.1 | 177.06±16.14 | 76.2±10.5 |
SWS-3 | 1.5 | 29.1±0.4 | 37.3±2.5 | 386.6±1.5 | 2.82±0.1 | 174.18±19.84 | 61.8±9.5 |
SWS-4 | 1.0 | 33.4±0.7 | 31.8±8.6 | 388.9±13.4 | 2.78±0.1 | 155.45±4.65 | 56.0±6.0 |
SWS-5 | 0.6 | 41.8±2.3 | 25.4±3.6 | 426.4±6.4 | 2.78±0.1 | 91.77±14.02 | 33.0±6.1 |
SWS-6 | 1.9 | 38.6±1.1 | 30.6±5.7 | 454.6±2.1 | 2.83±0.1 | 216.26±11.37 | 76.5±8.8 |
SWS-7 | 1.7 | 25.7±0.3 | 27.9±6.2 | 485.0±2.0 | 2.86±0.1 | 221.46±23. | 77.3±11.4 |
SWS-8 | 0.4 | 45.9±1.1 | 34.5±2.6 | 352.1±8.5 | 2.98±0.1 | 104.64±3.03 | 35.1±3.7 |
SWS-9 | 0.3 | 23.8±0.3 | 32.7±4.5 | 452.4±10.3 | 2.87±0.1 | 41.21±1.22 | 14.4±1.5 |
[1] | 陈杰, 卢演俦, 魏兰英, 等. 1999. 第四纪沉积物光释光测年中等效剂量测定方法的对比研究[J]. 地球化学, 28(5): 443-452. |
CHEN Jie, LU Yan-chou, WEI Lan-ying, et al. 1999. Optical stimulated luminescence dating of Quaternary sediments: A comparison using different equivalent dose determination methods[J]. Geochimica, 28(5): 443-452(in Chinese). | |
[2] | 邓起东, 闻学泽. 2008. 活动构造研究: 历史、 进展与建议[J]. 地震地质, 30(1): 1-30. |
DENG Qi-dong, WEN Xue-ze. 2008. A review of the research of active tectonics: History, progress and suggestions[J]. Seismology and Geology, 30(1): 1-30(in Chinese). | |
[3] | 顾功叙(主编). 1983. 中国地震目录[Z]. 北京: 科学出版社. |
GU Gong-xu(ed). 1983. Catalogue of Chinese Earthquakes[Z]. Science Press, Beijing(in Chinese). | |
[4] | 国家地震局 “阿尔金活动断裂带”课题组. 1992. 阿尔金活动断裂带[M]. 北京: 地震出版社. |
The Research Group on Altyn Tagh Active Fault Zone of State Seismological Bureau. 1992. The Altyn Tagh Active Fault Zone[M]. Seismological Press, Beijing(in Chinese). | |
[5] |
何文贵, 张波, 吴明, 等. 2018. 野马河-大雪山断裂野马河段探槽古地震特征[J]. 地震地质, 40(1): 261-275. doi: 10.3969/j.issn.0253-4967.2018.01.018.
DOI |
HE Wen-gui, ZHANG Bo, WU Ming, et al. 2018. Paleoseismology on the Yemahe segment of the Yemahe-Daxueshan Fault revealed by trench study[J]. Seismology and Geology, 40(1): 261-275(in Chinese). | |
[6] | 李海兵, 杨经绥, 许志琴, 等. 2006. 阿尔金断裂带对青藏高原北部生长、 隆升的制约[J]. 地学前缘, 13(4): 59-79. |
LI Hai-bing, YANG Jing-sui, XU Zhi-qin, et al. 2006. The constraint of the Altyn Tagh fault system to the growth and rise of the northern Tibetan plateau[J]. Earth Science Frontiers, 13(4): 59-79(in Chinese). | |
[7] | 刘兴旺, 袁道阳, 苏琦, 等. 2020. 酒西盆地白杨河断裂古地震特征研究[J]. 地震工程学报, 42(1): 90-97. |
LIU Xing-wang, YUAN Dao-yang, SU Qi, et al. 2020. Paleoearthquake characteristics along the Baiyanghe Fault in Jiuxi Basin[J]. China Earthquake Engineering Journal, 42(1): 90-97(in Chinese). | |
[8] |
刘兴旺, 袁道阳, 邹小波, 等. 2018. 青藏高原北缘三危山断裂晚更新世活动特征[J]. 地震地质, 40(1): 121-132. doi: 10.3969/j.issn.0253-4967.2018.01.010.
DOI |
LIU Xing-wang, YUAN Dao-yang, ZOU Xiao-bo, et al. 2018. Active characteristics of the Sanweishan Fault in the northern margin of the Tibetan plateau during late Pleistocene[J]. Seismology and Geology, 40(1): 121-132(in Chinese). | |
[9] | 罗浩, 何文贵, 袁道阳, 等. 2016. 昌马断裂带古地震活动特征的新认识[J]. 地震工程学报, 38(4): 632-637. |
LUO Hao, HE Wen-gui, YUAN Dao-yang, et al. 2016. New insight on paleoearthquake activity along the Changma Fault[J]. China Earthquake Engineering Journal, 38(4): 632-637(in Chinese). | |
[10] | 潘家伟, 李海兵, 孙知明, 等. 2015. 阿尔金断裂带新生代活动在柴达木盆地中的响应[J]. 岩石学报, 31(12): 3701-3712. |
PAN Jia-wei, LI Hai-bing, SUN Zhi-ming, et al. 2015. Tectonic response in the Qaidam Basin induced by Cenozoic activities of the Altyn Tagh Fault[J]. Acta Petrologica Sinica, 31(12): 3701-3712(in Chinese). | |
[11] | 冉勇康, 邓起东. 1999. 古地震学研究的历史、 现状和发展趋势[J]. 科学通报, 44(1): 12-20. |
RAN Yong-kang, DENG Qi-dong. 1999. History, status and trend about the research of paleoseismology[J]. Chinese Science Bulletin, 44(1): 12-20(in Chinese). | |
[12] | 冉勇康, 王虎, 陈立春, 等. 2018. 龙门山断裂带晚第四纪的大地震活动: 来自古地震研究的资料[J]. 地球物理学报, 61(5): 1938-1948. |
RAN Yong-kang, WANG Hu, CHEN Li-chun, et al. 2018. Late Quaternary fault activity of the Longmen Shan fault zone: Evidence from paleoseismic trenching[J]. Chinese Journal of Geophysics, 61(5): 1938-1948(in Chinese). | |
[13] | 王旭龙, 卢演俦, 李晓妮. 2005. 细颗粒石英光释光测年: 简单多片再生法[J]. 地震地质, 27(4): 615-622. |
WANG Xu-long, LU Yan-chou, LI Xiao-ni. 2005. Luminescence dating of fine-grained quartz in Chinese loess-simplified multiple aliquot regenerative-dose(MAR)protocol[J]. Seismology and Geology, 27(4): 615-622(in Chinese). | |
[14] | 徐锡伟, Tapponnier P, van der Woerd J, 等. 2003. 阿尔金断裂带晚第四纪左旋走滑速率及其构造运动转换模式讨论[J]. 中国科学(D辑), 33(10): 967-974. |
XU Xi-wei, Tapponnier P, van der Woerd J, et al. 2005. Late Quaternary sinistral slip rate along the Altyn Tagh Fault and its structural transformation model[J]. Science in China(Ser D), 48(3): 384-397. | |
[15] | 杨传成, 陈杰, 张克旗, 等. 2007. 水成相沉积物细颗粒石英光释光综合生长曲线的建立与应用[J]. 地震地质, 29(2): 402-411. |
YANG Chuan-cheng, CHEN Jie, ZHANG Ke-qi, et al. 2007. Standardized growth curves(SGC)for optical dating of fine-grained quartz from water-lain sediments[J]. Seismology and Geology, 29(2): 402-411(in Chinese). | |
[16] |
云龙, 杨晓平, 宋方敏, 等. 2016a. 青藏高原北缘三危山断裂晚第四纪以来的左旋走滑活动[J]. 地震地质, 38(2): 434-446. doi: 10.3969/j.issn.0253-4967.2016.02.01.
DOI |
YUN Long, YANG Xiao-ping, SONG Fang-min, et al. 2016a. Late Quaternary sinistral strike slip activities of Sanweishan Fault in the north of Tibetan plateau[J]. Seismology and Geology, 38(2): 434-446(in Chinese). | |
[17] | 云龙, 杨晓平, 王驹, 等. 2016b. 青藏高原北缘三危山断裂东北段的古地震事件[J]. 震灾防御技术, 11(2): 186-198. |
YUN Long, YANG Xiao-ping, WANG Ju, et al. 2016b. Paleo-earthquake events along northeastern segment of the Sanweishan Mountain Fault, northern Tibetan plateau[J]. Technology for Earthquake Disaster Prevention, 11(2): 186-198(in Chinese). | |
[18] |
云龙, 张进, 王驹, 等. 2019. 三危山断裂的水平运动特征与机制: 对青藏高原北缘生长的限定[J]. 地震地质, 41(6): 1333-1349. doi: 10.3969/j.issn.0253-4967.2019.06.002.
DOI |
YUN Long, ZHANG Jin, WANG Ju, et al. 2019. Horizontal movement characteristics of the active Sanweishan Fault and its mechanism: Constraints on the growth of the northern Qinghai-Tibetan plateau[J]. Seismology and Geology, 41(6): 1333-1349(in Chinese). | |
[19] | 张克旗, 吴中海, 吕同艳, 等. 2015. 光释光测年法: 综述及进展[J]. 地质通报, 34(1): 183-203. |
ZHANG Ke-qi, WU Zhong-hai, LÜ Tong-yan, et al. 2015. Review and progress of OSL dating[J]. Geological Bulletin of China, 34(1): 183-203(in Chinese). | |
[20] | 张培震, 徐锡伟, 闻学泽, 等. 2008. 2008年汶川8.0级地震发震断裂的滑动速率、 复发周期和构造成因[J]. 地球物理学报, 51(4): 1066-1073. |
ZHANG Pei-zhen, XU Xi-wei, WEN Xue-ze, et al. 2008. Slip rates and recurrence interval of the Longmen Shan active fault zone, and tectonic implications for the mechanism of the May 12 Wenchuan earthquake, 2008, Sichuan, China[J]. Chinese Journal of Geophysics, 51(4): 1066-1073(in Chinese). | |
[21] | 张裕明, 柳覃卓. 1989. 敦煌三危山断层: 一条无强震的第四纪活动断层[J]. 中国地震, 5(3): 37-48. |
ZHANG Yu-ming, LIU Tan-zhuo. 1989. The Sanweishan Fault: A Quaternary active fault without large earthquakes[J]. Earthquake Research in China, 5(3): 37-48(in Chinese). | |
[22] | 郑剑东. 1991. 阿尔金断裂带的几何学研究[J]. 中国区域地质, (1): 54-59. |
ZHENG Jian-dong. 1991. Geometry of the Altun fracture zone[J]. Regional Geology of China, (1): 54-59(in Chinese). | |
[23] |
Cunningham D. 2013. Mountain building processes in intracontinental oblique deformation belts: Lessons from the Gobi Corridor, Central Asia[J]. Journal of Structural Geology, 46:255-282.
DOI URL |
[24] |
Grützner C, Carson E, Walker R T, et al. 2017. Assessing the activity of faults in continental interiors: Palaeoseismic insights from SE Kazakhstan[J]. Earth Planetary Science Letters, 459:93-104.
DOI URL |
[25] |
Huntley D J, Godfrey-Smith D I, Thewalt M L W. 1985. Optical dating of sediments[J]. Nature, 313(5998): 105-107.
DOI URL |
[26] |
Meyer B, Tapponnier P, Bourjot L, et al. 1998. Crustal thickening in Gansu-Qinghai, lithospheric mantle subduction, and oblique, strike-slip controlled growth of the Tibet Plateau[J]. Geophysical Journal International, 135(1): 1-47.
DOI URL |
[27] |
Schwartz D P, Coppersmith K J. 1984. Fault behavior and characteristic earthquakes: Examples from the Wasatch and San Andreas fault zones[J]. Journal of Geophysical Research, 89(B7): 5681-5698.
DOI URL |
[28] | Shao Y X, Liu-Zeng J, Oskin M E, et al. 2018. Paleoseismic investigation of the Aksay restraining double bend, Altyn Tagh Fault, and its implication for barrier-breaching ruptures[J]. Journal of Geophysical Research, 123(5): 4307-4330. |
[29] |
Tapponnier P, Xu Z Q, Roger F, et al. 2001. Oblique stepwise rise and growth of the Tibet Plateau[J]. Science, 294(5547): 1671-1677.
PMID |
[30] | Wells D L, Coppersmith K J. 1994. New empirical relationships among magnitude, rupture length, rupture width, rupture area, and surface displacement[J]. Bulletin of the Seismological Society of America, 84(4): 974-1002. |
[31] |
Xiao Q B, Zhao G Z, Dong Z Y. 2011. Electrical resistivity structure at the northern margin of the Tibetan plateau and tectonic implications[J]. Journal of Geophysical Research, 116(B12): B12401.
DOI URL |
[32] |
Yin A, Rumelhart P E, Butler R, et al. 2002. Tectonic history of the Altyn Tagh fault system in northern Tibet inferred from Cenozoic sedimentation[J]. Geological Society of America Bulletin, 114(10): 1257-1295.
DOI URL |
[33] | Zhang P Z, Molnar P, Xu X W. 2007. Late Quaternary and present-day rates of slip along the Altyn Tagh Fault, northern margin of the Tibetan plateau[J]. Tectonics, 26(5): 1-24. |
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