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首页> 外文期刊>Tunnelling and underground space technology >Face stability analysis of a shallow horseshoe-shaped shield tunnel in clay with a linearly increasing shear strength with depth
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Face stability analysis of a shallow horseshoe-shaped shield tunnel in clay with a linearly increasing shear strength with depth

机译:剪切强度随深度线性增加的浅层马蹄形盾构隧道地表稳定性分析

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摘要

The face stability of a horseshoe-shaped shield tunnel in undrained clays with a linearly increasing strength is numerically and analytically investigated in this paper. Based on the kinematic approach of limit analysis, a continuous velocity field for a horseshoe-shaped shield tunnel is proposed to evaluate the limit support pressure of both the collapse and blow-out of the tunnel face. Moreover, the analytical results are compared with those obtained from the numerical simulation and other existing literatures. The results show that the horseshoe-shaped shield tunnel can improve the face stability compared to the circular shield tunnel. Finally, an improved velocity field is proposed, which provides a more realistic failure pattern and a better upper bound solution of the limit support pressure for the horseshoe-shaped shield tunnel.
机译:本文对强度呈线性增加的不排水黏土中马蹄形盾构隧道的面稳定性进行了数值和分析研究。基于极限分析的运动学方法,提出了一种马蹄形盾构隧道的连续速度场,以评估隧道塌陷和爆破的极限支撑压力。此外,将分析结果与从数值模拟和其他现有文献中获得的结果进行了比较。结果表明,与圆形盾构隧道相比,马蹄形盾构隧道可以提高工作面的稳定性。最后,提出了一种改进的速度场,该速度场为马蹄形盾构隧道提供了更逼真的破坏模式和极限支撑压力的更好的上限解。

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