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Geo-mechanical model test on the collaborative bearing effect of rock-support system for deep tunnel in complicated rock strata

机译:复杂岩层深埋隧道支护体系协同支护作用的地质力学模型试验

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摘要

Modem tunnel support design theory holds that surrounding rock not only generates load, but also takes load together with support system. However, how much loads will be taken by surrounding rock and support system respectively is still not clear. In order to investigate the cooperative effect of rock-support system for deep tunnel in complicated rock strata, we performed a true three-dimensional geo-mechanical model test to simulate tunnel construction crossing a weak fault based on the engineering background of Xianglushan Tunnel of Yunnan Water Diversion Project in China. Our test results reveal that: (1) the mechanical behavior of surrounding rock is influenced by the lithology. The evolution and distribution characteristics of displacement and stress are significantly different in various rock strata; (2) weak fault has little influence on the proportion of load taken by surrounding rocks, but has a distinct impact on the proportion of loads taken by supporting system components. Surrounding rock is the absolute dominant load-bearing body, taking about 97% of the excavation-induced load; (3) the bearing capacity of bolt is weak, and its main function is to reinforce surrounding rock. The lining is mainly used to bear load. Test results obtained in this study can provide important physical basis for the development of the construction scheme and the optimization of support design. These results can also serve as the benchmark for the validation of numerical models.
机译:现代隧道支护设计理论认为,围岩不仅产生荷载,而且与支护系统一起承担荷载。但是,目前尚不清楚围岩和支撑系统将分别承受多少载荷。为了研究复杂岩层深层隧道支护系统的协同作用,基于云南香鹭山隧道的工程背景,进行了真实的三维地质力学模型试验,模拟穿越弱断层的隧道施工。中国的引水工程。我们的测试结果表明:(1)围岩的力学行为受岩性的影响。不同岩层中位移和应力的演化和分布特征存在显着差异。 (2)弱断层对围岩承担的荷载比例影响不大,但对支撑系统构件承担的荷载比例影响明显。围岩是绝对主导的承重体,约占开挖引起的荷载的97%。 (3)锚杆的承载力较弱,其主要功能是加固围岩。衬里主要用于承受载荷。本研究获得的测试结果可为开发施工方案和优化支护设计提供重要的物理基础。这些结果也可以作为数值模型验证的基准。

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