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Combining Bored Tunnels: Optimal Construction Order of Multiple Independent Shield-Driven Tunnels

机译:结合钻孔隧道:多个独立盾构隧道的最优施工顺序

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A three-tunnel configuration was proposed to strengthen the North-South connection in Brussels. The optimal construction order of the bored tunnels, mainly focusing on the settlements and deformations of the surrounding soil mass is investigated here. All two-tunnel and three-tunnel construction orders are investigated by mainly focusing on the surface settlements calculated with Plaxis 2D. An extended variant of the grout pressure method is developed to also incorporate the relative magnitude of the different settlement components due to shield tunneling. The accuracy of a simplified version is simultaneously tested by comparison of the obtained final settlement troughs. The influence of the constitutive model on the settlement values is also verified. More specifically, the difference in results between the Mohr-Coulomb model and the Hardened Strain model with small strain stiffness is investigated. Finally, a simple empirical superposition principle is established based on the method of Peck to approximate the Plaxis results. The research is based on the geometry of and other assumptions made for a new tunnel connection in Brussels but presents a general overall design concept. The results can thus be generalized to other multiple tunnel configurations.
机译:为加强布鲁塞尔的南北连接,提出了三隧道配置。在此研究钻孔隧道的最佳施工顺序,主要针对周围土体的沉降和变形。通过重点关注使用Plaxis 2D计算的地表沉降来研究所有两个隧道和三个隧道的施工顺序。开发了灌浆压力方法的扩展变体,以也包含由于盾构隧穿而引起的不同沉降分量的相对大小。通过比较获得的最终沉降槽,可以同时测试简化版本的准确性。还验证了本构模型对沉降值的影响。更具体地说,研究了具有较小应变刚度的Mohr-Coulomb模型和Hardened Strain模型之间的结果差异。最后,基于Peck方法建立了简单的经验叠加原理,以近似Plaxis结果。该研究基于布鲁塞尔新隧道连接的几何形状和其他假设,但提出了总体的总体设计概念。因此,可以将结果推广到其他多个隧道配置。

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