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Opening Supports to Segmental Linings - A Novel Shotcrete Support Solution

机译:打开支撑件对节段性衬里 - 一种新型射击晶体支持解决方案

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Substantial schedule advantages can be made on projects if cross-passage construction can occur at the same time as tunnel boring machine (TBM) operation with little or no impact on TBM logistics. However, this approach can prove difficult to achieve with many of the more cost-effective means of supporting the segmental lining during cross-passage break-out. This paper discusses the constraints and shortcomings of conventional approaches, and describes how a cost-effective solution involving a shotcrete shell and opening constructed inside the segmental lining was designed and constructed to deliver cost and time savings on Seattle University Link contract U220. The paper explains the spatial and schedule constraints on the TBM tunnelling and cross-passage construction, and how a shotcrete solution was arrived at in preference to traditional approaches. As the solution was novel the design had to be robust, and the paper explains how this was achieved through a combination of 3D finite element modelling and closed form solutions. Following a description of the trials to verify that the structure could be demolished post-cross-passage completion, the paper describes how the shell solution was constructed, used and demolished safely to leave the lining surface in a clean and undamaged state fit for tunnel operation.
机译:如果跨通道施工在隧道镗床(TBM)运行的同时,可以对项目进行实质性的时间表优势,对于TBM物流影响很少或没有影响。然而,这种方法可以证明难以实现在交叉通道突破期间支持节段衬里的许多更具成本效益的方法。本文讨论了常规方法的约束和缺点,并描述了涉及在节段衬里内部构建的喷射壳和开口的成本效益的解决方案是设计和构建的,以提供西雅图大学链路合同U220的成本和时间。本文解释了TBM隧道和交叉通道建设的空间和时间表约束,以及喷射克雷特解决方案如何偏好传统方法。由于解决方案是新颖的,该设计必须坚固,本文解释了通过3D有限元建模和封闭式解决方案的组合来实现这一目标。在证明可以拆除交叉通道完成后结构的试验说明之后,本文描述了如何建造壳体解决方案,安全地使用和拆卸,以便将衬里表面置于清洁和未损坏的状态适合隧道运行。

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