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Analysis of the stabilising effect of ribs of reinforced sprayed concrete (RRS) in the Loren road tunnel

机译:罗恩公路隧道钢筋喷射混凝土(RRS)肋骨稳定效果分析

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摘要

The LOren tunnel is a road tunnel at Ring road 3 in Oslo, Norway. The tunnel has a length of 915m in rock, has two tubes with three lanes and breakdown fields, and was first opened in 2013. For rock support in the case of weak rock masses, ribs of reinforced sprayed concrete (RRS) were used. The scope of this article is to present and analyse the results of a measurement programme carried out on three of these ribs. This is done by focusing on deformations in the rock and the support function of the ribs due to these deformations. The instrumented RRS had strain meters installed in the reinforcement and the concrete. From the surface above the RRS, multipoint borehole extensometers were placed to survey the soil and rock mass deformations caused by tunnel advancement. In addition, 2D and 3D rock stress measurements and rock property testing were conducted. The measurements and numerical modelling show that the deformations are too small to cause a considerable load on the installed support construction and that the 2D stress measurements seem to best fit the in-situ stress conditions. The rock mass quality in the area of this study is on the verge of where one usually starts using reinforced ribs. It is concluded that the RRS are not required because of deformations in the rock but, rather, because of the need to lock blocks, increase the friction in joints and prevent movement in larger filled joints. For this purpose, the RRS should probably be designed differently to get the most out of the materials used.
机译:LOren隧道是位于挪威奥斯陆的3号环路上的公路隧道。该隧道长915m,在岩石中,有两个带三个车道和击穿场的管,于2013年首次开放。在岩体较弱的情况下,为支撑岩石,使用了钢筋喷射混凝土(RRS)的肋骨。本文的范围是介绍和分析对其中三个肋骨执行的测量程序的结果。通过关注岩石的变形以及由于这些变形而产生的肋的支撑功能,可以做到这一点。仪表化的RRS在钢筋和混凝土中安装了应变仪。在RRS上方的地面上,放置了多点钻孔引伸计,以调查由隧道推进引起的土壤和岩体变形。此外,还进行了2D和3D岩石应力测量以及岩石性能测试。测量和数值模型表明,变形太小而无法在已安装的支撑结构上造成相当大的载荷,并且二维应力测量似乎最适合现场应力条件。在该研究区域中,岩体质量接近于通常开始使用加强筋的地方。结论是,不需要RRS是因为岩石变形,而是因为需要锁定块,增加节理中的摩擦力并防止较大的填充节理中的运动。为此,可能应该对RRS进行不同的设计,以最大程度地利用所用的材料。

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