映秀-北川断裂带北川段唐家湾滑坡活动历史与形成机制

田尤, 黄海, 谢忠胜, 佘涛, 李金洋. 2023. 映秀-北川断裂带北川段唐家湾滑坡活动历史与形成机制. 沉积与特提斯地质, 43(3): 629-639. doi: 10.19826/j.cnki.1009-3850.2022.03004
引用本文: 田尤, 黄海, 谢忠胜, 佘涛, 李金洋. 2023. 映秀-北川断裂带北川段唐家湾滑坡活动历史与形成机制. 沉积与特提斯地质, 43(3): 629-639. doi: 10.19826/j.cnki.1009-3850.2022.03004
TIAN You, HUANG Hai, XIE Zhongsheng, SHE Tao, LI Jinyang. 2023. A study of activity history and formation mechanism of Tangjiawan landslide in Beichuan section of Yingxiu-Beichuan fault zone. Sedimentary Geology and Tethyan Geology, 43(3): 629-639. doi: 10.19826/j.cnki.1009-3850.2022.03004
Citation: TIAN You, HUANG Hai, XIE Zhongsheng, SHE Tao, LI Jinyang. 2023. A study of activity history and formation mechanism of Tangjiawan landslide in Beichuan section of Yingxiu-Beichuan fault zone. Sedimentary Geology and Tethyan Geology, 43(3): 629-639. doi: 10.19826/j.cnki.1009-3850.2022.03004

映秀-北川断裂带北川段唐家湾滑坡活动历史与形成机制

  • 基金项目: 中国地质调查项目(DD20230449、DD20160251、DD20190644);第二次青藏高原综合科学考察研究(编号:2019QZKK0902)
详细信息
    作者简介: 田尤(1991—),男,工程师,硕士,主要从事地质灾害与工程地质研究。E-mail:tianyou2013@yeah.net
  • 中图分类号: P642.22

A study of activity history and formation mechanism of Tangjiawan landslide in Beichuan section of Yingxiu-Beichuan fault zone

  • 以映秀-北川断裂带北川段唐家湾滑坡为研究对象,基于地形资料、多期遥感与航拍影像,结合14C测年的方法,细分了唐家湾滑坡的活动历史,分析了2016年唐家湾滑坡再次复活的主要控制因素。研究结果表明:(1)唐家湾斜坡历史上至少发生过四期滑动,其中第一期次滑坡发生在全新世以前;第二期次滑坡发生于全新世初期;第三期次滑坡发生在2008年汶川地震时期,系龙门山断裂带活动过程中产生的同震滑坡;第四期次滑坡分别发生在2016年和2018年,属于断裂带滑坡堆积体的再次局部复活;(2)2016年唐家湾滑坡的形成与断裂活动、河流侧蚀和水等因素有关,其中,上覆滑坡堆积体、下伏高陡基岩形成的二元斜坡结构,是唐家湾滑坡发生的决定性条件;断裂活动及其导致的浅地表最大主应力偏转是唐家湾滑坡变形的重要内因;(3)以唐家湾滑坡为例,初步讨论了基于地形条件控制的断裂带滑坡堆积体复活的地质模型,其形成演化表现为断裂带活动和河流侵蚀形成滑坡(或陡峭地形)→先期滑坡后壁(或陡峭地形)接受上部老滑坡堆积→二元斜坡结构控制下的老滑坡复活变形。该滑坡为研究地形控制断裂带滑坡复活提供了独特的案例,研究成果对于理解和评估该类滑坡,开展综合防治等方面具有重要的借鉴价值。

  • 加载中
  • 图 1  2016年唐家湾滑坡全貌

    Figure 1. 

    图 2  唐家湾滑坡位置

    Figure 2. 

    图 3  北川唐家湾滑坡多期遥感数据对比

    Figure 3. 

    图 4  唐家湾滑坡地形坡度图

    Figure 4. 

    图 5  2008年唐家湾滑坡裸露出的“古木”残片

    Figure 5. 

    图 6  唐家湾滑坡横剖面(图4中2-2’)示意图

    Figure 6. 

    图 7  2016年北川唐家湾滑坡剖面图

    Figure 7. 

    图 8  北川唐家湾滑坡发生区构造应力场

    Figure 8. 

    图 9  滑坡前缘水沿着松散坡积物与基岩界面向外渗透(镜向W)

    Figure 9. 

    图 10  基于地形条件的断裂带滑坡复活模型

    Figure 10. 

    图 11  映秀-北川断裂带滑坡复活形成演化

    Figure 11. 

    表 1  唐家湾滑坡14C年龄测定结果

    Table 1.  Results of 14C age determination of the Tangjiawan landslide

    样品编号取样位置样品描述暴露年龄
    C01唐家湾滑坡上部平台木头9500 ± 30 BP
    下载: 导出CSV
  • [1]

    陈国光, 计凤桔, 周荣军, 等, 2007. 龙门山断裂带晚第四纪活动性分段的初步研究[J]. 地震地质, 29(3): 657-673 doi: 10.3969/j.issn.0253-4967.2007.03.019

    Chen G G, Ji F J, Zhou R J, et al. , 2007. Primary research of activity segmentation of Longmenshan fault zone since late-quaternary[J]. Seismology and Geology, 29(3): 657-673. doi: 10.3969/j.issn.0253-4967.2007.03.019

    [2]

    陈晓清, 崔鹏, 赵万玉, 等, 2010. “5·12”汶川地震堰塞湖应急处置措施的讨论——以唐家山堰塞湖为例[J]. 山地学报, 28(3): 350-357 doi: 10.3969/j.issn.1008-2786.2010.03.013

    Chen X Q, Cui P, Zhao W Y, et al. , 2010. A discussion of emergency treatment of dammed lake caused by “5.12” Wenchuan earthquake[J]. Journal of mountain science, 28(3): 350-357. doi: 10.3969/j.issn.1008-2786.2010.03.013

    [3]

    Cruden D M, Varnes D J, 1996. Landslide types and processes, special report, transportation research board[J]. National Academy of Sciences, 247: 36-75.

    [4]

    崔鹏, 韦方强, 何思明, 等, 2008.5•12汶川地震诱发的山地灾害及减灾措施[J]. 山地学报, 26(3): 280-282 doi: 10.3969/j.issn.1008-2786.2008.03.006

    Cui P, Wei G Q, He S M, et al. , 2008. Mountain disasters induced by the earthquake of May 12 in Wenchuan and the disasters mitigation[J]. Journal of Mountain Science, 28(3): 280-282. doi: 10.3969/j.issn.1008-2786.2008.03.006

    [5]

    Dai F C, Tu X B, Xu C, et al. , 2011. Rock avalanches triggered by oblique-thrusting during the 12 May 2008 Ms 8.0 Wenchuan earthquake, China[J]. Geomorphology, 132( 3): 300-318.

    [6]

    Deng H, Wu L Z, Huang R Q, et al. , 2016. Formation of the Siwanli ancient landslide in the Dadu River, China[J]. Landslides, 14(1): 385-394.

    [7]

    董树文, 张岳桥, 龙长兴, 等, 2008. 四川汶川 Ms8.0地震地表破裂构造初步调查与发震背景分析[J]. 地球学报, 29(3): 392-396 doi: 10.3321/j.issn:1006-3021.2008.03.013

    Dong S W, Zhang Y Q, Long C X, et al. , 2008. Surface rupture investigation of the Wenchuan Ms8.0 earthquake of May 12th, 2008. west Sichuan, and analysis of its occurrence setting[J]. Acta Geoscientica Sinica, 29(3): 392-396. doi: 10.3321/j.issn:1006-3021.2008.03.013

    [8]

    丰成君, 张鹏, 戚帮申, 等, 2017. 走滑断裂活动导致地应力解耦的机理研究——以龙门山断裂带东北段为例[J]. 大地测量与地球动力学, 37(10): 1003-1009 doi: 10.14075/j.jgg.2017.10.003

    Feng C J, Zhang P, Qi B S, et al. , 2017. Mechanics of in-situ stress decoupling caused by the activity of strike slip fault: the case of northeast segment of Longmenshan fault belt[J]. Journal of Geodesy and Geodynamics, 37(10): 1003-1009. doi: 10.14075/j.jgg.2017.10.003

    [9]

    郭健, 许模, 赵勇, 等, 2013. 黑水河库区某古滑坡形成及复活机制[J]. 成都理工大学学报: 自然科学版, 40( 6): 721-728

    Guo J, Xu M, Zhao Y, et al. , 2013. Formation and reactivation mechanism of an ancient landslide in Heishui reservoir of Minjiang River, China[J]. Journal of Chengdu University of Technology: Science & Technology edition, 40(6): 721-728.

    [10]

    黄润秋, 2007.20 世纪以来中国的大型滑坡及其发生机制[J]. 岩石力学与工程学报, 26( 3): 433-454 doi: 10.3321/j.issn:1000-6915.2007.03.001

    Huang R Q, 2007. Large-scale landslides and their sliding mechanisms in China since the 20th century[J]. Chinese Journal of Rock Mechanics and Engineering, 26( 3): 433-454. doi: 10.3321/j.issn:1000-6915.2007.03.001

    [11]

    黄润秋, 李为乐, 2009. 汶川地震触发崩塌滑坡数量及其密度特征分析[J]. 地质灾害与环境保护, 20(3): 1-7 doi: 10.3969/j.issn.1006-4362.2009.03.001

    Huang R Q, Li W L, 2009. Analysis on the number and density of landslides triggered by the 2008 Wenchuan earthquake, China[J]. Journal of Geological Hazards and Environment Preservation, 20(3): 1-7. doi: 10.3969/j.issn.1006-4362.2009.03.001

    [12]

    Huang R Q, Li W L, 2009. Develop ment and distribution of geohazards Triggered by 5•12 Wenchuan Earthquake in China[J]. Science in China (Series E)-Technological Sciences, 52(4): 810-819. doi: 10.1007/s11431-009-0117-1

    [13]

    李海兵, 付小方, Jér me VAN DER WOERD, 等, 2008. 汶川地震( M_S8.0)地表破裂及其同震右旋斜向逆冲作用[J]. 地质学报, 82(12): 1623-1643 doi: 10.3321/j.issn:0001-5717.2008.12.002

    Li H B, Fu X F, Jér me VAN DER WOERD, et al, 2008. Coseisimic surface rupture and dextral-slip oblique thrusting of the MS8.0 Wenchuan earthquake[J]. Acta Geologica Sinica, 82(12): 1623-1643. doi: 10.3321/j.issn:0001-5717.2008.12.002

    [14]

    龙建辉, 张吉宁, 2015. 煤矿井巷上方大型老滑坡复活机理与致灾过程[J]. 采矿与安全工程学报, 32( 3): 511-517 doi: 10.13545/j.cnki.jmse.2015.03.026

    Long J H, Zhang J N, 2015. Revival mechanism and disaster-causing process of old-large landslide on coal mine tunnel[J]. Journal of Mining & Safety Engineering, 32(3): 511-517. doi: 10.13545/j.cnki.jmse.2015.03.026

    [15]

    刘健, 熊探宇, 赵越, 等, 2012. 龙门山活动断裂带运动学特征及其构造意义[J]. 吉林大学学报(地球科学版), 42(S2): 320-330

    Liu J, Xiong T Y, Zhao Y, et al, 2012. Kinematic characteristics of Longmenshan active fault zone and its tectonic implication[J]. Journal of Jilin University( Earth Science Edition), 42(S2): 320-330.

    [16]

    刘太平, 2000. 北川水温、断层气异常与绵竹、安县间5.0级地震[J]. 四川地震, (4): 48-52 doi: 10.3969/j.issn.1001-8115.2000.04.008

    Liu T P, 2000. Abnormal change of water temperature and fault gas and the M5.0 1999 Anxian earthquake[J]. Earthquake Research in Sichuan, (4): 48-52. doi: 10.3969/j.issn.1001-8115.2000.04.008

    [17]

    石定国, 2009. 唐家湾堰塞体形成机制及稳定性评价[C]//汶川大地震工程震害调查分析与研究: 中国岩石力学与工程学会: 1091−1098

    Shi D G, 2009. Formation mechanism and stability evaluation of Tangjiawan landslide dam[C]// Investigation and analysis of earthquake damage of wenchuan earthquake, Chinese Society for Rock Mechanics and Engineering: 1091−1098.

    [18]

    Tang C, Zhu J, Li W L, 2009. Rainfall triggered debris flows after Wenchuan earthquake[J]. Bulletin of Engineering Geology and the Environ ment, 68: 187-194. doi: 10.1007/s10064-009-0201-6

    [19]

    吴树仁, 石菊松, 姚鑫, 等, 2008. 四川汶川地震地质灾害活动强度分析评价[J]. 地质通报, 27(11): 1900-1906 doi: 10.3969/j.issn.1671-2552.2008.11.020

    Wu S R, Shi J S, Yao X, et al. , 2008. Analysis and evaluation of geohazard intensity of the Wenchuan earthquake, Sichuan, China[J]. Geological Bulletin of China, 27(11): 1900-1906. doi: 10.3969/j.issn.1671-2552.2008.11.020

    [20]

    吴树仁, 王涛, 石玲, 等, 2010.2008汶川大地震极端滑坡事件初步研究[J]. 工程地质学报, 18(2): 145-159 doi: 10.3969/j.issn.1004-9665.2010.02.001

    Wu S R, Wang T, Shi L, et al. , 2010. Study on catastrophic landslides triggered by 2008 great Wenchuan earthquake, Sichuan, China[J]. Journal of Engineering Geology, 18(02): 145-159. doi: 10.3969/j.issn.1004-9665.2010.02.001

    [21]

    许强, 董秀军, 2011. 汶川地震大型滑坡成因模式[J]. 地球科学(中国地质大学学报), 36(6): 1134-1142

    Xu Q, Dong X J, 2011. Genetic types of large scale landslides induced by Wenchuan Earthquake[J]. Earth Science(Journal of China University of Geosciences), 36(6): 1134-1142.

    [22]

    杨琴, 范宣梅, 许强, 等, 2018. 北川唐家湾滑坡变形历史与形成机制研究[J]. 水文地质工程地质, 45(2): 136-141 doi: 10.16030/j.cnki.issn.1000-3665.2018.02.21

    Yang Q, Fan X M, Xu Q, et al. , 2018. A study of the deformation history and mechanism of the Tangjiawan landslide[J]. Hydrogeology & Engineering Geology, 45(02): 136-141. doi: 10.16030/j.cnki.issn.1000-3665.2018.02.21

    [23]

    杨为民, 吴树仁, 张春山, 等, 2007. 陕南岚皋县柳家坡滑坡形成机制研究[J]. 工程地质学报, 15(2): 186-192 doi: 10.3969/j.issn.1004-9665.2007.02.008

    Yang W M, Wu S R, Zhang C S, et al. , 2007. Formation mechanism of Liujiapo landslide in Langao county, southern Shanxi province[J]. Journal of Engineering Geology, 15(02): 186-192. doi: 10.3969/j.issn.1004-9665.2007.02.008

    [24]

    殷跃平, 2008. 汶川八级地震地质灾害研究[J]. 工程地质学报, 16(4): 433-444

    Yin Y P, 2008. Researches on the geohazards triggered by Wenchuan earthquake, Sichuan[J]. Journal of Engineering Geology, 16(04): 433-444.

    [25]

    张永双, 石菊松, 孙萍, 等, 2009. 汶川地震内外动力耦合及灾害实例[J]. 地质力学学报, 15(2): 131-141.

    Zhang Y S, Shi J S, Sun P, et al. , 2009. Coupling between endogenic and exogenic Geological processes in the Wenchuan earthquake and example analysis of geohazards[J]. Journal of Geomechanics, 15(2): 131-141.

    [26]

    张永双, 郭长宝, 姚鑫, 等, 2016. 青藏高原东缘活动断裂地质灾害效应研究[J]. 地球学报, 37(3): 277-286 doi: 10.3975/cagsb.2016.03.03

    Zhang Y S, Guo C B, Yao X, et al. , 2016. Research on the geohazard effect of active fault on the eastern margin of the Tibetan Plateau[J]. Acta Geoscientica Sinica, 37(3): 277-286. doi: 10.3975/cagsb.2016.03.03

    [27]

    张永双, 吴瑞安, 郭长宝, 等, 2018. 古滑坡复活问题研究进展与展望[J]. 地球科学进展, 33(7): 728-740 doi: 10.11867/j.issn.1001-8166.2018.07.0728

    Zhang Y S, Wu R A, Guo C B, et al. , 2018. Research progress and prospect on reactivation of ancient landslides[J]. Advances in Earth Science, 33(7): 728-740. doi: 10.11867/j.issn.1001-8166.2018.07.0728

    [28]

    张永双, 刘筱怡, 吴瑞安, 等, 2021. 青藏高原东缘深切河谷区古滑坡: 判识、特征、时代与演化[J]. 地学前缘, 28(2): 94-105 doi: 10.13745/j.esf.sf.2020.9.10

    Zhang Y S, Liu X Y, Wu R A, et al. , 2021. Cognization, characteristics, age and evolution of the ancient landslides along the deep-cut valleys on the eastern Tibetan Plateau, China[J]. Earth Science Frontiers, 28(2): 94-105. doi: 10.13745/j.esf.sf.2020.9.10

    [29]

    中国地震局监测预报司, 2009. 汶川8.0级地震科学研究报告[M]. 北京: 地震出版社.

    Department of monitoring and prediction, CEA, 2009. Scientific Research Report of the Wenchuan MS8.0 Earthquake[M]. Beijing: Seismological Press.

  • 加载中

(11)

(1)

计量
  • 文章访问数:  825
  • PDF下载数:  112
  • 施引文献:  0
出版历程
收稿日期:  2021-07-21
修回日期:  2021-09-23
录用日期:  2021-10-15
刊出日期:  2023-09-30

目录