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A simplified method for estimating the longitudinal and circumferential behaviors of the shield-driven tunnel adjacent to a braced excavation

机译:一种简化的方法,用于估计屏蔽驱动隧道的纵向和周向行为与支撑挖掘相邻

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摘要

The construction of soil excavations will inevitably have an adverse effect on the adjacent tunnels. However, the structural responses of existing shield-driven tunnels adjacent to a braced excavation and their serviceability are still not fully understood. This paper presents a simplified method for evaluating the longitudinal and circumferential behaviors of the shield-driven tunnel adjacent to a braced excavation. To capture both shear and bending deformation of segmental linings, an appropriate model was adopted to study the longitudinal tunnel deformation features based on the Timoshenko beam theory. A continuous ring structure under a plane strain condition was used to determine the circumferential behavior of segmental lining. Case history was used to verify the developed simplified method. Systematic parametric studies were performed to develop a better understanding of the governing factors of the tunnel behaviors, including excavation-tunnel relative position and the retaining wall deflection. Furthermore, the serviceability limit state of shield tunnels was quantified using the defined three factors of safety, which enables a quick assessment of the excavation-induced tunnel damage potential. The contours of factor of safety can also be employed to determine the envelope of the excavation influence zones.
机译:土壤挖掘的建设将不可避免地对相邻的隧道产生不利影响。然而,仍然没有完全理解与支撑挖掘和其可维修性相邻的现有屏蔽驱动隧道的结构响应。本文介绍了一种简化的方法,用于评估与支撑挖掘相邻的屏蔽驱动隧道的纵向和周向行为。为了捕获节段衬里的剪切和弯曲变形,采用适当的模型来研究基于Timoshenko光束理论的纵向隧道变形特征。使用平面应变条件下的连续环结构来确定节段衬砌的圆周行为。案例历史用于验证已开发的简化方法。进行系统参数研究,以便更好地了解隧道行为的控制因素,包括挖掘隧道相对位置和保持壁偏转。此外,使用定义的安全性因素量化了屏蔽隧道的可靠性限制状态,这使得能够快速评估挖掘引起的隧道损伤电位。也可以采用安全因子的轮廓来确定挖掘影响区域的包络。

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