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Large-scale geomechanical model testing of an underground cavern group in a true three-dimensional (3-D) stress state

机译:真实三维(3-D)应力状态下地下洞室群的大规模地质力学模型测试

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摘要

The stability of a large cavern group at great depth is discussed on the basis of large-scale three-dimensional (3-D) geomechanical model tests and numerical simulations. The model tests are described in detail. Improvements in the tests were made in terms of experimental techniques and advanced measurement methods. The model tests utilized active loading on six sides of a rock mass in a true 3-D stress state. During the model construction, precast blocks were fabricated and monitoring holes were defined prior to test initiation. Newly developed combination ball-sliding walls were installed on each of the major loading surfaces to reduce the friction induced by model deformation. A unique grouting and installation technique employing prestressed cables was adopted in the tests. A digital photogrammetric technique, displacement sensing bars using fiber Bragg grating (FBG) technology, and mini multipoint extensometers were developed for measuring deformation. Overloading tests were then conducted for different overburden depths, and 3-D numerical analyses were performed to simulate the testing procedures. Conclusions regarding the stability of the cavern group were developed based on a comparison between the experimental and numerical results.
机译:在大型三维(3-D)地质力学模型试验和数值模拟的基础上,讨论了大洞穴群在深处的稳定性。详细描述了模型测试。在测试技术和先进的测量方法方面进行了改进。模型测试利用了真实3D应力状态下岩体六个侧面的主动载荷。在模型构建过程中,预制块被制造出来并在测试开始之前定义了监控孔。新开发的组合式滚珠滑动壁安装在每个主载荷表面上,以减少模型变形引起的摩擦。测试中采用了采用预应力电缆的独特灌浆和安装技术。开发了一种数字摄影测量技术,使用光纤布拉格光栅(FBG)技术的位移感应条以及微型多点引伸计来测量变形。然后针对不同的覆盖层深度进行过载测试,并进行3-D数值分析以模拟测试程序。通过对实验结果和数值结果进行比较,得出关于洞穴组稳定性的结论。

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