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The angle for setting foot reinforcement bolt based on the failure mode of shallow tunnel in loess

机译:基于黄土浅隧道故障模式设定脚钢筋的角度

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During the construction of shallow tunnel in loess, installation angle of foot reinforcement bolt (FRB) has a significant effect on settlement at tunnel vault. In this paper, according to the failure modes of shallow tunnel in loess, considering the internal force transmission, deformation coordination, and arch foot displacement between the steel frame and the FRB, a mechanical calculation model for joint load-bearing and displacement of the steel frame for primary support and the FRB is proposed, and found that the maximum anti-sliding force is at angle of 47 degrees of FRBs. The calculated angle is used at different sections of the Jianzicha No. 2 tunnel, measured settlement and deformation of the tunnel vault in field tests showed the angle is applicable in construction. By using the finite element simulation, the influence of anchor pipe angle on the settlement of tunnel vault was studied. The results showed that, FRBs at 47 have the best effect in controlling settlement.
机译:在黄土的浅隧道施工过程中,脚踏螺栓(FRB)的安装角度对隧道拱顶的沉降作用显着。本文根据黄土浅隧道的故障模式,考虑到钢框架和FRB之间的内部力传递,变形协调和拱形足位移,钢的接头承载和位移的机械计算模型提出初级支持和FRB的框架,并发现最大抗滑动力为47度FRB的角度。计算的角度在Jianzicha No.2隧道的不同部分中使用,在现场测试中的隧道拱顶的测量沉降和变形显示,该角度适用于施工。通过使用有限元模拟,研究了锚管角度对隧道保管库沉降的影响。结果表明,47时的FRB在控制沉降方面具有最佳效果。

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