ISSN 1003-8035 CN 11-2852/P
    张鹏,王晓宇,唐雪梅,等. 横穿滑坡下X80管道极限滑坡位移分析[J]. 中国地质灾害与防治学报,2023,34(2): 21-29. DOI: 10.16031/j.cnki.issn.1003-8035.202207021
    引用本文: 张鹏,王晓宇,唐雪梅,等. 横穿滑坡下X80管道极限滑坡位移分析[J]. 中国地质灾害与防治学报,2023,34(2): 21-29. DOI: 10.16031/j.cnki.issn.1003-8035.202207021
    ZHANG Peng,WANG Xiaoyu,TANG Xuemei,et al. Limit displacement of a landslide for an X80 buried pipeline crossing it[J]. The Chinese Journal of Geological Hazard and Control,2023,34(2): 21-29. DOI: 10.16031/j.cnki.issn.1003-8035.202207021
    Citation: ZHANG Peng,WANG Xiaoyu,TANG Xuemei,et al. Limit displacement of a landslide for an X80 buried pipeline crossing it[J]. The Chinese Journal of Geological Hazard and Control,2023,34(2): 21-29. DOI: 10.16031/j.cnki.issn.1003-8035.202207021

    横穿滑坡下X80管道极限滑坡位移分析

    Limit displacement of a landslide for an X80 buried pipeline crossing it

    • 摘要: 长输管道在运输天然气时不可避免地会穿越地质灾害频发区域,其中滑坡对于管道的威胁性最大,因此对滑坡作用下管道的安全进行评估十分重要。针对X80管道横穿滑坡可能遇到的安全问题,提出管道的极限滑坡位移定义,将其作为评价管道安全的外部指标。依据中贵线某滑坡工况,采用ABAQUS软件建立横穿滑坡下的管-土模型,对不同滑坡裂缝、滑坡宽度下的管道力学行为与极限滑坡位移变化情况进行数值模拟研究。结果表明:不同裂缝位置、滑坡宽度下,管道应力均随位移荷载增加而增大;滑坡裂缝位置距管道越远,管道承受的极限滑坡位移值越大,当裂缝位置为9 m时,管道所能承受的极限滑坡位移达4.03 m;文中工况下滑坡宽度35 m为管道应力变化分界点,此时管道所能承受的极限滑坡位移值最小。

       

      Abstract: When transporting natural gas, long-distance pipelines will inevitably pass through areas with frequent geological disasters, and landslides are the most threatening to pipelines. Therefore, it is very important to study the safety assessment of pipelines under the action of landslides. In view of the possible safety problems of X80 pipeline crossing the landslide, the definition of the limit landslide displacement of the pipeline is proposed as an external index to evaluate the safety of the pipeline. According to the working condition of a landslide on the Zhongwei Guiyang line, the pipe soil model under the landslide is established by using ABAQUS software, and the mechanical behavior of the pipeline and the change of the limit landslide displacement under different landslide cracks and landslide widths are numerically simulated. The results show that the pipeline stress increases with the increase of displacement load under different crack positions and landslide widths; The farther the landslide crack location is from the pipeline, the greater the limit landslide displacement that the pipeline can bear. When the crack location is 9 m, the limit landslide displacement that the pipeline can bear reaches 4.03 m; Under the working condition of this paper, the landslide width of 35 m is the dividing point of pipeline stress change. At this time, the limit landslide displacement that the pipeline can withstand is the smallest.

       

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