张其朋, 问小江, 谭东升, 陈馨荑, 余荟. 岩层倾角对钻井套管剪切变形的影响分析[J]. 煤矿安全, 2020, 51(5): 183-186.
    引用本文: 张其朋, 问小江, 谭东升, 陈馨荑, 余荟. 岩层倾角对钻井套管剪切变形的影响分析[J]. 煤矿安全, 2020, 51(5): 183-186.
    ZHANG Qipeng, WEN Xiaojiang, TAN Dongsheng, CHEN Xinyi, YU Hui. Analysis of Influence of Strata Dip Angle on Shear Deformation of Drilling Casing[J]. Safety in Coal Mines, 2020, 51(5): 183-186.
    Citation: ZHANG Qipeng, WEN Xiaojiang, TAN Dongsheng, CHEN Xinyi, YU Hui. Analysis of Influence of Strata Dip Angle on Shear Deformation of Drilling Casing[J]. Safety in Coal Mines, 2020, 51(5): 183-186.

    岩层倾角对钻井套管剪切变形的影响分析

    Analysis of Influence of Strata Dip Angle on Shear Deformation of Drilling Casing

    • 摘要: 针对钻井套管剪切破坏问题,基于煤层开采的上覆岩层移动规律,采用ANSYS数值模拟软件建立钻井套管剪切变形的有限元模型,模拟分析了不同的岩层倾角对钻井套管剪切变形区域应力分布的影响。研究结果显示:套管发生剪切变形后,剪切面由原始的圆形变为椭圆形,且椭圆长轴端点区为剪应力的应力集中区;岩层倾角增大会造成套管剪应力的应力集中区面积增大,且应力集中区最大剪应力也在逐渐增大。

       

      Abstract: Aiming at the shear failure of drilling casing, based on the movement law of overlying strata in coal seam mining, the finite element model of shear deformation of drilling casing is established by ANSYS numerical simulation software, and the effect of different strata dip angles on the stress distribution in the shear deformation area of drilling casing is simulated and analyzed. The results show that after shear deformation of casing, the shear plane changes from original circular to elliptical, and the end point of elliptical long axis is the stress concentration area of shear stress. Increasing the dip angle of strata will result in the increase of the stress concentration area of casing shear stress, and the maximum shear stress in the stress concentration area also gradually increases.

       

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