中国地质调查局 中国地质科学院主办
科学出版社出版

强震区高位滑坡远程灾害特征研究——以四川茂县新磨滑坡为例

殷跃平, 王文沛, 张楠, 闫金凯, 魏云杰, 杨龙伟. 2017. 强震区高位滑坡远程灾害特征研究——以四川茂县新磨滑坡为例[J]. 中国地质, 44(5): 827-841. doi: 10.12029/gc20170501
引用本文: 殷跃平, 王文沛, 张楠, 闫金凯, 魏云杰, 杨龙伟. 2017. 强震区高位滑坡远程灾害特征研究——以四川茂县新磨滑坡为例[J]. 中国地质, 44(5): 827-841. doi: 10.12029/gc20170501
YIN Yueping, WANG Wenpei, ZHANG Nan, YAN Jingkai, WEI Yunjie, YANG Longwei. 2017. Long runout geological disaster initiated by the ridge-top rockslide in a strong earthquake area: A case study of the Xinmo landslide in Maoxian County, Sichuan Province[J]. Geology in China, 44(5): 827-841. doi: 10.12029/gc20170501
Citation: YIN Yueping, WANG Wenpei, ZHANG Nan, YAN Jingkai, WEI Yunjie, YANG Longwei. 2017. Long runout geological disaster initiated by the ridge-top rockslide in a strong earthquake area: A case study of the Xinmo landslide in Maoxian County, Sichuan Province[J]. Geology in China, 44(5): 827-841. doi: 10.12029/gc20170501

强震区高位滑坡远程灾害特征研究——以四川茂县新磨滑坡为例

  • 基金项目:
    中国地质调查局地质灾害详细调查项目(DD20179609)支持与资助
详细信息
    作者简介: 殷跃平, 男, 1960年生, 博士, 从事地质灾害与防治研究; E-mail:yinyp@mail.cigem.gov.cn
  • 中图分类号: P642.22

Long runout geological disaster initiated by the ridge-top rockslide in a strong earthquake area: A case study of the Xinmo landslide in Maoxian County, Sichuan Province

  • Fund Project: Supported by Geological Hazard Detailed Investigation Project of China Geological Survey (No. DD20179609)
More Information
    Author Bio: YIN Yueping, male, born in 1960, doctor, engages in the study of geological hazard prevention and treatment; E-mail: yinyp@mail.cigem.gov.cn .
  • 近年来,在汶川地震等强震区常发生一种特大的高位滑坡地质灾害,它从高陡斜坡上部位置剪出并形成凌空加速坠落,具有撞击粉碎效应和动力侵蚀效应,导致滑体解体碎化,从而转化为高速远程碎屑流滑动或泥石流流动,并铲刮下部岩土体,使体积明显增加。新磨滑坡就是这种典型,它发生于2017年6月24日,滑坡后缘高程约3450m,前缘高程约2250 m,高差1200 m,水平距离2800 m,堆积体体积达1637×104 m3,摧毁了新磨村村庄,导致83人死亡。新磨滑坡地处叠溪较场弧形构造带前弧西翼,母岩为中三叠统中厚层变砂岩夹板岩,是1933年叠溪Ms7.5级震中区(烈度X度)和汶川Ms8.0级强震区(烈度IX度),形成震裂山体。滑源区分布多组不连续结构面,将厚层块状岩体分割成碎裂块体,在高程3150~3450 m区间形成明显的压裂鼓胀区,特别是存在2组反倾节理带,具有典型的“锁固段”失稳机理。滑坡体高位剪出滑动,连续加载并堆积于斜坡体上部,体积达390×104 m3,导致残坡积岩土层失稳并转化为管道型碎屑流;碎屑流高速流滑至斜坡下部老滑坡堆积体后,因前方地形开阔、坡度变缓,转化为扩散型碎屑流散落堆积,具有“高速远程”成灾模式。据此,可建立强震山区高位滑坡的早期识别方法,当陡倾山脊存在大型岩质高位滑坡时,应当考虑冲击作用带来的动力侵蚀效应和堆积加载效应,特别是沿沟谷赋存丰富的地下水时,发生高速远程滑坡的可能性将明显增加。因此,在地质灾害调查排查中,在高位岩质滑坡剪出口下方的斜坡堆积体上的聚居区等应划定为地质灾害危险区。在强震山区地质灾害研究中,不仅应采用静力学理论分析滑坡的失稳机理,而且应采用动力学方法加强运动过程的成灾模式研究。

  • 加载中
  • 图 1  茂县新磨滑坡地理位置图

    Figure 1. 

    图 2  茂县新磨滑坡特征分区及多期遥感影像对比

    Figure 2. 

    图 3  茂县新磨滑坡及周边地质特征

    Figure 3. 

    图 4  茂县新磨滑坡区域地震烈度图(1933年叠溪Ms7.5级地震和2008年汶川Ms8.0级地震)

    Figure 4. 

    图 5  1933年叠溪Ms7.5级地震震中区大型滑坡及堰塞湖分布图

    Figure 5. 

    图 6  茂县新磨滑坡附近降雨曲线

    Figure 6. 

    图 7  茂县新磨滑坡滑动前遥感影像及典型照片

    Figure 7. 

    图 8  茂县新磨滑坡滑动前和滑动后工程地质剖面图

    Figure 8. 

    图 9  茂县新磨滑坡滑源区岩体结构特征

    Figure 9. 

    图 10  茂县新磨滑坡-碎屑流堆积特征

    Figure 10. 

    图 11  茂县新磨滑坡滑前InSAR解译结果

    Figure 11. 

    图 12  茂县新磨滑坡发生前37小时滑源区鼓胀裂缝照片

    Figure 12. 

    图 13  茂县新磨滑坡运动速度几何剖面及计算结果

    Figure 13. 

    图 14  茂县新磨滑坡地震记录曲线

    Figure 14. 

    表 1  茂县新磨滑坡物源和堆积分区

    Table 1.  Zoning of material sources and accumulation of the Xinmo landslide, Maoxian County

    下载: 导出CSV
  • Catane S G, Cabria H B, Jr C P T, Jr R M S, Zarco M A H, Pioquinto W C.2007.Catastrophic rockslide-debris avalanche at St.Bernard, Southern Leyte, Philippines[J].Landslides, 4(1):85-90. doi: 10.1007/s10346-006-0050-3

    Chen Zuyu, Meng Xingmin, Yin Yueping, Dijkstra T, Winter M, Wasowski J.2016.Landslide research in China[J].Quarterly Journal of Engineering Geology & Hydrogeology, 49(1-4):qjegh2016-100. https://www.researchgate.net/.../310757610_Landslide_Research_in_China

    Fan Xuanmei, Xu Qiang, Scaringi G, Dai Lanxin, Li Weile, Dong Xiujun, Zhu Xing, Pei Xiangjun, Dai Keren, Havenith HansBalder.2017.Failure mechanism and kinematics of the deadly June 24th 2017 Xinmo landslide, Maoxian, Sichuan, China[J].Landslides, online DOI 10.1007/s10346-017-0907-7. doi: 10.1007/s10346-017-0907-7

    Huang Runqiu, Li Weile.2011.Formation, distribution and risk control of landslides in China[J].Journal of Rock Mechanics and Geotechnical Engineering, 3(2):97-116. doi: 10.3724/SP.J.1235.2011.00097

    Hungr O, McDougall S.2009.Two numerical models for landslide dynamic analysis[J].Comput Geosci, 35(5):978-92. doi: 10.1016/j.cageo.2007.12.003

    Sassa K, He B, Dang K, Nagai O, Takara K.2014.Plenary:progress in landslide dynamics[C]//Sassa K, Canuti P, Yin Y P (editors) Landslide science for a safer geoenvironment.Switzerland:Springer International Publishing; 37-67.

    Scheidegger A E.1973.On the prediction of the reach and velocity of catastrophic landslides[J].Rock Mech Rock Eng, 5:11-40. https://link.springer.com/article/10.1007/BF01301796

    Su Lijun, Hu K H, Zhang W F, Wang J, Lei Y, Zhang CL, Cui P, Alessandro Pasuto, Zheng QH.2017.Characteristics and triggering mechanism of Xinmo landslide on 24 June 2017 in Sichuan, China[J].Journal of Mountain Science, 14(9):1689-1700. doi: 10.1007/s11629-017-4609-3

    Wen Mingsheng, Chen Hongqi, Zhang Mingzhi, Chu Hongliang, Wang Wenpei, Zhang Nan, Huang Zhe.2017.Characteristics and formation mechanism analysis of the "6·24" catastrophic landslide of the June 24 of 2017, at Maoxian, Sichuan[J].Chinese Journal of Geological Hazards and Control, 28(3):1-7(in Chinese with English abstract). https://link.springer.com/article/10.1007/s11069-017-3026-9

    Xu Qiang, Li Weile, Dong Xiujun, Xiao Xianxuan, Fan Xuanmei, PeiXiangjun.The Xinmocun landslide on June 24, 2017 in Maoxian, Sichuan:characteristics and failure mechanism., 2017, 36(11):2612-2628. https://www.researchgate.net/publication/320318336_Failure...

    Xu Qiang, Li Weile, Dong Xiujun, Xiao Xianxuan, Fan Xuanmei, Pei Xiangjun.2018.The Xinmocun Landslide on June 24, 2017 in Diexi, Maoxian, Sichuan:Characteristics and Failure Mechanism[J].Chinese Journal of Rock Mechanics and Engineering, (in Press). https://link.springer.com/article/10.1007/s11069-017-3026-9

    Xu Qiang, Zhang S, Li WL.2011.Spatial distribution of large-scale landslides induced by the 5.12 Wenchuan earthquake[J].Journal of Mountain Science, 8(2):246-260. doi: 10.1007/s11629-011-2105-8

    Xu Xiangning, Wang Lansheng.2012.Mountain hazard caused by earthquake in Songping branch, the Upper Min River and its controlling[J], The Chinese Journal of Geological Hazard and Control, 13(2):31-35(in Chinese with English abstract).

    Yin Yueping, Zheng Wamo, Li Xiaochun.2011a.Catastropic landslides associated with the M8.0 Wenchuan earthuqake[J].Bulletin of engineering Geology & the Environment, 70(1):15-32. https://link.springer.com/article/10.1007/s10064-010-0334-7

    Yin Yueping, Sun Ping, Zhu Jiliang, Yang Shengyun.2011b.Research on catastrophic rock avalanche at Guanling, Guizhou, China[J].Landslides, 8(4):517-525. doi: 10.1007/s10346-011-0266-8

    Yin Yueping, Cheng Yuliang, Liang Jingtao, Wang Wenpei.2016.Heavy-rainfall-induced catastrophic rockslide-debris flow at Sanxicun, Dujiangyan, after the Wenchuan Ms 8.0 earthquake[J].Landslides, 13(1):9-23. doi: 10.1007/s10346-015-0554-9

    Yin Yueping, Wang Wenpei, Zhang Nan, Yan Jingkai, Wei Yunjie.2017.The June 2017 Maoxian Landslide:Geological Disaster in An Earthquake Area after the Wenchuan Ms8.0 Earthquake[J].Sci China Tech.Sci., 2017, 60:doi:10.1007/s11431-017-9148-2.

    Zhang Ming, McSaveney M J.2017.Rock avalanche deposits store quantitative evidence on internal shear during runout[J].Geophysical Research Letters, 44:doi:10.1002/2017GL073774.

    Zhang Yongshuang, Cheng Yuliang, Yin Yueping, Lan Hengxing.2014.High-position debris flow:a long-term active geohazard after the wenchuan earthquake.Engineering Geology, 180(180):45-54. https://www.sciencedirect.com/science/article/pii/S0013795214001227

    Zhao Yong.2017.Analysis of movement process of Maoxian landslide, Sichuan[R].Beijing:China Earthquake Networks Center (in Chinese).

    温铭生, 陈红旗, 张鸣之, 褚宏亮, 王文沛, 张楠, 黄喆.2017.四川茂县"6.24"特大滑坡特征与成因机制分析[J].中国地质灾害与防治学报, 28(3):1-7.

    许强, 李为乐, 董秀军, 肖先煊, 范宣梅, 裴向军.四川茂县叠溪镇新磨村滑坡特征与成因机制初步研究[J].岩石力学与工程学报, 2017, 36(11):2612-2628. http://www.cnki.com.cn/Journal/B-B3-YSLX-2017-11.htm

    许强, 李为乐, 董秀军, 肖先煊, 范宣梅, 裴向军.2018.四川茂县叠溪镇新磨村滑坡特征与成因机理初步研究[J].岩石力学与工程学报, (待刊). http://bianke.cnki.net/Home/Corpus/14112.html

    许向宁, 王兰生.2002.岷江上游松坪沟地震山地灾害与生态环境保护[J].中国地质灾害与防治学报, 13(2):31-35. http://www.cqvip.com/QK/98314X/200202/6521123.html

    赵永. 2017. 四川6. 24茂县滑坡过程分析[R]. 北京: 中国地震台网中心.

  • 加载中

(14)

(1)

计量
  • 文章访问数:  3916
  • PDF下载数:  896
  • 施引文献:  0
出版历程
收稿日期:  2017-09-19
修回日期:  2017-10-18
刊出日期:  2017-10-25

目录