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Deformation Monitoring and Stability Analysis of Shaft Lining in Weakly Cemented Stratum

机译:弱水泥层井壁变形监测与稳定性分析

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摘要

Shaft linings in thick weakly cemented stratum have the disadvantages of large deformation and repeated damage after repair. Considering the typical geologic characteristics and the failure characteristics of shaft linings, we establish a multilayer automatic deformation monitoring system in this paper, and the monitoring system can realize the real-time, continuous, and long-term dynamic monitoring on shaft linings. Based on the concrete strength failure criterion under biaxial compression and the analytical solution for spatially axisymmetric problem of thick-wall cylinders, the damage limit of the shaft lining in Xieqiao coal mine is obtained. Then, we choose three sections as the test area according to the typical damage forms of shaft linings to carry out the monitoring scheme on the auxiliary shaft in Xieqiao coal mine. The monitoring results show that the extreme value of the shaft lining deformation is 2.369mm. And the shaft lining located in the border between the floor aquifer and the bedrock generates the most severe deformation, which is about 89.4% of the deformation limit. The shaft lining deformation increment fluctuates in certain range, which belongs to elastic deformation. Finally, we inverse the stress state according to the deformation value of the shaft lining, and the obtained additional stress is found to be lower than the ultimate compressive strength. Long-term project practice confirms that the deformation monitoring results can reflect the real stress condition of the shaft lining and that the monitoring system can realize the real-time dynamic evaluation for the status of the shaft lining.
机译:厚弱胶结地层的井壁衬砌具有变形大和维修后反复损坏的缺点。结合竖井衬砌的典型地质特征和破坏特征,建立了多层自动变形监测系统,该监测系统可以实现竖井衬砌的实时,连续,长期动态监测。基于双轴压缩下的混凝土强度破坏准则和厚壁圆筒空间轴对称问题的解析解,得出了谢桥煤矿井壁衬砌的破坏极限。然后,根据井壁衬砌的典型破坏形式,选择三个断面作为试验区域,对谢桥煤矿副井进行监测。监测结果表明,轴衬变形的极限值为2.369mm。位于底板含水层与基岩之间边界的井壁衬砌产生最严重的变形,约为变形极限的89.4%。轴衬变形增量在一定范围内波动,属于弹性变形。最后,根据轴衬的变形值逆转应力状态,发现所获得的附加应力低于极限抗压强度。长期的项目实践证明,变形监测结果可以反映井壁的真实应力状况,并且该监测系统可以实现井壁状态的实时动态评估。

著录项

  • 来源
    《Advances in civil engineering》 |2018年第12期|8462746.1-8462746.12|共12页
  • 作者

    Lyu Xianzhou; Wang Weiming;

  • 作者单位

    Shandong Univ Sci & Technol Coll Architecture & Civil Engn Qingdao 266590 Peoples R China;

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  • 正文语种 eng
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