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Analytical Solution of Ground Stress Induced by Shallow Tunneling with Arbitrary Distributed Loads on Ground Surface

机译:浅埋隧道上任意分布荷载浅埋隧道引起的地应力解析解

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The impact of shallow tunnel construction on the surrounding environment is often considered as a symmetric half-plane problem with circular holes. In this research, the analytical solutions of the ground stresses and displacements of a shallow circular tunnel in an elastic half-plane under arbitrary distributed loads on ground surface were derived, based on the complex variable method. Then, an application was implemented to analyze the potential plastic zone induced by shallow tunneling adjacent to the ground surface structures. The verification of the results obtained from the proposed analytical prediction model was carried out using the numerical simulations. Additionally, the influences of different boundary condition (different magnitudes and ranges of arbitrary distributed loads and different symmetric boundary conditions of the tunnel perimeter) on the distribution characteristics of the potential plastic zones were analyzed. In general, the results showed that the larger the pile loads and the closer the relative position between the tunnel and distributed loads, the more distinct the coalesced trends of the potential plastic zones around the tunnel and the potential plastic zones around the distributed loads.
机译:浅隧道施工对周围环境的影响通常被认为是带有圆孔的对称半平面问题。在此研究中,基于复变量法,得出了在弹性半平面内任意分布荷载作用下弹性半平面内浅圆形隧道地应力和位移的解析解。然后,实施了一个应用程序来分析由浅埋隧道引起的与地表结构相邻的潜在塑性区。从提议的分析预测模型获得的结果的验证是使用数值模拟进行的。此外,分析了不同边界条件(任意分布荷载的大小和范围以及隧道周界的不同对称边界条件)对潜在塑性区分布特征的影响。通常,结果表明,桩荷载越大,隧道与分布荷载之间的相对位置越近,隧道周围的潜在塑性区和分布荷载周围的潜在塑性区的合并趋势越明显。

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