• Included in Chinese Science Citation Database
  • Included in Scopus
XU Jiang, LUO Benquan, LI Qingchen, et al. Cause analysis and control measures of landslide in Yibin well site of Sichuan Province[J]. Geological Survey of China, 2024, 11(1): 75-82. DOI: 10.19388/j.zgdzdc.2024.01.09
Citation: XU Jiang, LUO Benquan, LI Qingchen, et al. Cause analysis and control measures of landslide in Yibin well site of Sichuan Province[J]. Geological Survey of China, 2024, 11(1): 75-82. DOI: 10.19388/j.zgdzdc.2024.01.09

Cause analysis and control measures of landslide in Yibin well site of Sichuan Province

More Information
  • Received Date: May 22, 2023
  • Revised Date: November 02, 2023
  • An oil and gas well site in Gongxian County of Yibin in Sichuan Province is located on the ancient sliding accumulation body. Due to the excavation of the well site operation platform, the ancient sliding accumulation body was partially revived, and the ancient sliding accumulation body collapsed in March 2018, which was in the process of creeping deformation. According to the field survey, the landslide at the well site is tongue-shaped in plane, with a length of about 200 m and a width of about 150 m. The height difference between the front and rear edges of the landslide is about 35 m, and the thickness of the drilling structure slide is about 8m. It is estimated that the volume of the landslide is about 27×104 m3. The well site landslide is divided into four deformation areas on the plane, and a large number of tension fractures and uplift cracks were developed on the well site platform and the middle and back of the slide body, with cracks width of 4 to 8 cm and uplift height of 21 to 35 cm. The special terrain condition and soil layer structure cause the multi-layer sliding surface of the landslide. Considering that the landslide at the well site belongs to the situation of side-slip treatment, the selected treatment plan is mainly anti-slide pile + anchor cable + net spraying between piles + pile top connecting beam + retaining wall + cut-off drainage ditch, and the plan has passed the post-monitoring verification. The results show that the horizontal and vertical displacements of the anti-sliding piles at each monitoring point gradually converge and tend to be stable, and the stress of the anchor cable is in a gentle state with stable of 14 kN. This control scheme has good applicability, and provide design reference for related projects.
  • [1]
    黄润秋. 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,2007,26(3):433-454.
    Huang R Q.Large-scale landslides and their sliding mechanisms in China since the 20th century[J].Chinese Journal of Rock Mechanics and Engineering,2007,26(3):433-454.
    [2]
    黄润秋,李为乐.“5.12”汶川大地震触发地质灾害的发育分布规律研究[J].岩石力学与工程学报,2008,27(12):2585-2592.
    Huang R Q,Li W L.Research on development and distribution rules of geohazards induced by Wenchuan earthquake on 12th May,2008[J].Chinese Journal of Rock Mechanics and Engineering,2008,27(12):2585-2592.
    [3]
    周跃峰,龚壁卫,胡波,等.牵引式滑坡演化模式研究[J].岩土工程学报,2014,36(10):1855-1862.
    Zhou Y F,Gong B W,Hu B,et al.Evolution mode of retrogressive landslide[J].Chinese Journal of Geotechnical Engineering,2014,36(10):1855-1862.
    [4]
    周毅,丁明涛,黄涛,等.芦山县滑坡灾害影响因素的空间分异性[J].中国地质调查,2022,9(4):45-55.
    Zhou Y,Ding M T,Huang T,et al.Spatial heterogeneity of influencing factors of landslide disasters in Lushan County[J].Geological Survey of China,2022,9(4):45-55.
    [5]
    白永健,郑万模,李明辉,等.川藏公路茶树山滑坡特征及成因机制分析[J].工程地质学报,2010,18(6):862-866.
    Bai Y J,Zheng W M,Li M H,et al.Characteristics and formation mechanism of Cha-Shu-Shan landslide on Sichuan-Tibet highway[J].Journal of Engineering Geology,2010,18(6):862-866.
    [6]
    胡欣,熊帮彬,肖剑,等.基于SVM-BP降雨型黄土滑坡灾害安全评价模型研究[J].中国公路学报,2023,36(4):68-80.
    Hu X,Xiong B B,Xiao J,et al.Safety evaluation model of rainfall-type loess landslide disaster based on SVM-BP[J].China Journal of Highway and Transport,2023,36(4):68-80.
    [7]
    龚凌枫,徐伟,铁永波,等.基于数值模拟的城镇地质灾害危险性评价方法[J].中国地质调查,2022,9(4):82-91.
    Gong L F,Xu W,Tie Y B,et al.Risk assessment on urban geological disaster based on numerical calculation[J].Geological Survey of China,2022,9(4):82-91.
    [8]
    吴瑞安,郭长宝,杜宇本,等.川藏铁路加查—朗县段地质灾害发育特征研究[J].现代地质,2017,31(5):956-964.
    Wu R A,Guo C B,Du Y B,et al.Research on geohazard developing characteristics in Jiacha to Langxian section of Sichuan-Tibet Railway[J].Geoscience,2017,31(5):956-964.
    [9]
    陈晓岚,洪波.重庆市特大型滑坡风险评价研究[J].中国地质调查,2015,2(4):71-75.
    Chen X L,Hong B.Research on risk evaluation of large landslides in Chongqing City[J].Geological Survey of China,2015,2(4):71-75.
    [10]
    Poli P.Creep and slip:Seismic precursors to the Nuugaatsiaq landslide (Greenland)[J].Geophysical Research Letters,2017,44(17):8832-8836.
    [11]
    Bao C Y,Zhan L T,Xia Y J,et al.Development trend and stability analysis of creep landslide with obvious slip zone under rainfall-taking Xinchang Xiashan basalt slope as an example[J].Frontiers in Earth Science,2022,9:808086.
    [12]
    李洪建,洪五华,史文兵,等.贵州惠水鑫朋滑坡变形破坏机制[J].中国地质灾害与防治学报,2019,30(5):19-26.
    Li H J,Hong W H,Shi W B,et al.Deformation and failure mechanism of Xinpeng landslide in Huishui County,Guizhou Province[J].The Chinese Journal of Geological Hazard and Control,2019,30(5):19-26.
    [13]
    国家市场监督管理总局,国家标准化管理委员会.GB/T 38509—2020 滑坡防治设计规范[S].北京:中国标准出版社,2020:3.
    State Administration for Market Regulation,Standardization Administration.GB/T 38509—2020 Code for the Design of Landslide Stabilization[S].Beijing:Standards Press of China,2020:3.
    [14]
    袁小铭,王双峰.长宁页岩气田区某丛式井场滑坡变形特征及形成机制浅析[J].地质灾害与环境保护,2019,30(2):64-71.
    Yuan X M,Wang S F.Analysis on the deformation characteristics and formation mechanism of a cluster well field landslide in Changning shale gas field area[J].Journal of Geological Hazards and Environment Preservation,2019,30(2):64-71.
    [15]
    中华人民共和国国土资源部.DZ/T 0219—2006 滑坡防治工程设计与施工技术规范[S].北京:中国标准出版社,2006:11.
    Ministry of Natural Resources of the People's Republic of China.DZ/T 0219—2006 Specification of Design and Construction for Landslide Stabilization[S].Beijing:Standards Press of China,2006:11.
  • Related Articles

    [1]LIAN Zhipeng, CHEN Yu, ZHANG Yu, LI Yining, LIU Lei, TAN Jianmin. Universal monitoring and early warning for landslide geological hazard: A case study of Xupu County in Hunan Province[J]. Geological Survey of China, 2025, 12(1): 140-149. DOI: 10.19388/j.zgdzdc.2024.208
    [2]MIAO Yuanliang, ZHANG Shukun, MENG Chao. Analysis of the deformation trend of landslides in the accumulation layer on the bank of Three Gorges Reservoir area[J]. Geological Survey of China, 2024, 11(6): 86-92. DOI: 10.19388/j.zgdzdc.2024.148
    [3]YIN Dong, WANG Shangjie. The excavation deformation mechanism and the seismic reinforcement effect evaluation of complex accumulation slope of a converter station in Southern Sichuan[J]. Geological Survey of China, 2024, 11(4): 101-113. DOI: 10.19388/j.zgdzdc.2023.319
    [4]YAO Jianqun, WU Yang. Surface deformation monitoring of Saige Tower in Shenzhen based on SBAS Technology[J]. Geological Survey of China, 2023, 10(3): 110-116. DOI: 10.19388/j.zgdzdc.2023.03.13
    [5]ZHANG Hui, MO Si, TAN Haiying. Effect evaluation of landslide emergency treatment based on automatic monitoring: A case study of Tianchigong landslide in Tongzi County of Guizhou Province[J]. Geological Survey of China, 2023, 10(2): 87-93. DOI: 10.19388/j.zgdzdc.2023.02.11
    [6]LIU Kang, WEI Rongzhu, XU Shichao. Structure deformation characteristics of Shanxi uplift area during Yanshan movement period[J]. Geological Survey of China, 2019, 6(2): 58-67. DOI: 10.19388/j.zgdzdc.2019.02.07
    [7]ZHANG Zhaoqi, PAN Yongsheng, WEI Yansheng, DUAN Chunsen, LIU Chang, LI Kuifang. Deformation characteristics and geological significance of Xiaohongshan formation in Beishan Area, Inner Mongolia[J]. Geological Survey of China, 2018, 5(4): 50-56. DOI: 10.19388/j.zgdzdc.2018.04.06
    [8]YANG Xianhua, HUANG Jie, TIAN Li, SHAO Huaiyong, HAN Lei, SUN Xiaofei. Major achievements and progress of remote sensing monitoring mines in Sichuan Province[J]. Geological Survey of China, 2016, 3(5): 41-47.
    [9]MA Xue-jun, YANG Xu-dong, JIA Guo-xin. Genesis Analysis of Fault Creep Type Ground Fissures in the Hebei Plain[J]. Geological Survey of China, 2015, 2(8): 48-54.
    [10]LIN Xin-wang, ZHANG Ya-feng, WANG Xing, ZHAO Duan-chang, GUO Qi-ming, L Jun-li. The Material Composition and Structural Deformation of Precambrian Strata in Fuyun area, Xinjiang[J]. Geological Survey of China, 2015, 2(6): 42-52.
  • Cited by

    Periodical cited type(1)

    1. 于亮飞. 韶关市乌石镇流坑村滑坡地质灾害成因及防治措施探讨. 城市建设理论研究(电子版). 2025(01): 94-96 .

    Other cited types(0)

Catalog

    Article views (71) PDF downloads (137) Cited by(1)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return