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Options for deformable segmental lining systems for tunnelling in squeezing rock

机译:挤压岩石隧道中可变形分段衬砌系统的选项

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摘要

The rock pressure developing when shield tunnelling through squeezing rock may damage the segmental lining. This paper analyses the extent to which the application range of shielded TBMs in squeezing rocks might be widened by using deformable lining systems, while considering the aspects of structural safety, construction management, TBM technologies and construction costs. Deformable lining systems exploit a basic feature of squeezing ground: the rock pressure decreases when deformations are allowed to occur. Two basic options are available: radially deformable linings, where rock deformations occur outside the lining extrados; and tangentially deformable linings which can accommodate a reduction in their circumference. Comparative analyses of radially or tangentially deformable linings and conventional, practically rigid segmental linings show that deformable lining systems offer advantages only for deep tunnels crossing rocks of relatively fair quality. In such cases, rock pressure can be decreased significantly by allowing deformations to occur, so that a deformable lining (particularly, a tangentially deformable one) offers a more effective use of the available bored profile than a thicker stiff lining of the same concrete quality.
机译:当盾构通过挤压岩石隧穿时产生的岩石压力可能会损坏分段衬砌。本文在考虑结构安全性,施工管理,TBM技术和施工成本等方面,分析了采用可变形衬砌系统扩大盾构式TBM在挤压岩石中的应用范围的程度。可变形的衬砌系统具有挤压地面的基本特征:允许变形时,岩石压力会降低。有两个基本选项:可径向变形的衬砌,其中岩石变形发生在衬砌拱顶外部;以及可切向变形的衬里,可减少周长。对径向或切向可变形衬砌与常规的,实际上是刚性的分段衬砌进行的比较分析表明,可变形衬砌系统仅对穿过质量相对中等的岩石的深层隧道提供了优势。在这种情况下,可通过允许变形发生来显着降低岩石压力,从而使可变形衬砌(尤其是可切向变形的衬砌)比相同质量的较厚刚性衬砌更有效地利用可用的钻孔轮廓。

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