ISSN 1009-6248CN 61-1149/P 双月刊

主管单位:中国地质调查局

主办单位:中国地质调查局西安地质调查中心
中国地质学会

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    兰州皋兰山Ⅲ-2号滑坡变形特征及复活条件预测

    Deformation Characteristics and Prediction of Resurrection Conditions of Landslide Ⅲ-2 in Gaolan Mountain, Lanzhou

    • 摘要: 皋兰山滑坡是兰州市区最大的老滑坡群,滑坡前缘是兰州市区人口最密集地段之一。 近年来,受极端降水、绿化灌溉影响,滑坡局部出现变形迹象,以Ⅲ-2号变形最显著,对坡下居民生命财产安全构成直接威胁。笔者以现场监测数据基础,分析滑坡变形特征;基于滑坡未来可能遭遇的极端工况,基于定量方法,确定滑坡整体失稳条件。结果表明,地表开裂仅是局部落水洞扩展,并非裂缝变形与降雨入渗后滑体中含水量变化密切相关,当前整体稳定,日降雨量36 mm对滑坡变形没有影响。基于定量计算结果,皋兰山Ⅲ-2大规模复活的可能性较小;百年一遇降雨后,滑坡稳定性降低,但不会整体失稳;极低概率的特大暴雨后,滑坡可能复活;Ⅷ度地震影响后,滑坡可能复活。研究结果可为当地防灾减灾和国土空间用途管制提供依据。

       

      Abstract: The Gaolan Mountain landslide is the largest group of old landslides in Lanzhou, and the landslide front is one of the most densely populated areas in Lanzhou. In recent years, affected by extreme precipitation and green irrigation, local deformation signs have appeared in landslides, with No. Ⅲ-2 deformation being the most significant, posing a direct threat to the safety of residents' lives and property under the slope. Based on on-site monitoring data, this paper analyzes the deformation characteristics of landslides. Based on the extreme working conditions that the landslide may encounter in the future, the overall instability conditions of the landslide are determined based on quantitative methods. The results show that the surface cracking is only the extension of the local tribal water hole, and the fracture deformation is not closely related to the change of water content in the slip body after rainfall infiltration, and the overall stability is currently stable, and the daily rainfall of 36 mm has no effect on the landslide deformation. Based on quantitative calculations, the large-scale resurrection of Gaolan Mountain Ⅲ-2 is less likely. After a once-in-a-century rainfall, the stability of landslides decreases, but it will not be unstable overall; After a very low probability of heavy rainfall, the landslide may be revived; After the impact of a magnitude Ⅷ earthquake, landslides may be revived. The research results can provide a basis for local disaster prevention and mitigation and land space use control.

       

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