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Study on the Mechanical Behavior of Double Primary Support of Soft Rock Tunnel under High Ground Stresses and Large Deformation

机译:高地应力下软岩隧道双初级支撑的力学行为及大变形研究

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Double primary support structures could effectively solve the problem of large deformation of surrounding rock for soft rock tunnels. However, the mechanical behavior of this new support structure is still incomplete, and the design method should be revised. Based on the theory of energy conversion, this paper analyzes the support characteristic curve of double primary support and puts forward the dynamic design method of double primary support. Considering that the secondary lining can be set after monitoring the deformation amount and deformation rate of the first primary support, its support parameters can be dynamically adjusted according to the actual situation. By applying the double primary support design method in the Maoxian tunnel of Chenglan Railway, the field monitoring results show that the double primary support has a significant effect on the energy release of surrounding rocks, greatly reducing the load acting on the secondary lining and ensuring the safety and reliability of the tunnel structure.
机译:双初级支撑结构可以有效解决软岩隧道周围岩石大变形问题。然而,这种新的支持结构的机械行为仍然不完整,应修改设计方法。基于能量转换理论,本文分析了双初级施用的支持特性曲线,并提出了双初级支撑的动态设计方法。考虑到在监测第一初级支撑的变形量和变形率之后可以设置二次衬里,可以根据实际情况动态调整其支持参数。通过在茂兰铁路茂夏隧道中应用双重初级支撑设计方法,现场监测结果表明,双重初级支持对周围岩石的能量释放有重大影响,大大减少了对二次衬里上的负荷并确保了隧道结构的安全性和可靠性。

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