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Displacement analysis of tunnel support in soft rock around a shallow highway tunnel at Golovec

机译:Golovec浅埋公路隧道周围软岩隧道支护位移分析

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Within the last 10 years Slovenia has been constructing its highway network. The Golovec tunnel, as a part of Slovenia's capital ring is thus one of the most important connections of Ljubljana to the east and to the north. It is a double tube three-lane tunnel in soft rock with small to medium overburden. Its construction, following NATM, caused huge problems to all parties involved. The tunnel support was well monitored during its construction, which gave the authors a good opportunity to analyse the results. The Golovec tunnel is constructed through one of few hills surrounding Ljubljana, of Carboniferous age, consisting of clastic rock: siltstone, claystone and sandstone. Golovec hill belongs to the first of two overthrusting zones from this area, so the rock is strongly faulted. Tunnel monitoring consisted of daily 3-D tunnel tube displacement measurements in 97 measuring sections, and of two measuring sections within the tunnel with more complex measuring equipment, to monitor stress changes and rock deformations around both tunnel tubes. Monitoring of the surface 3-D movements gave us the opportunity to study the influence of the tunnel construction on the surface above it. The tunnel, its geology, construction procedure and monitoring results are described in the first part of the paper. The second part consists of the interpretation of monitored results, with an emphasis on results concerning development and evolution of the excavation-damaged zone in the rock around the tunnel. Back-calculations, performed as a basis for the interpretation procedure, are also presented in this part. Calculations of the propagation of the tunnel destressed zone and stress-field around the tunnel, up to the surface, were performed by means of numerical model with the finite difference method. The evolution of tunnel displacements and their prediction was based on the use of Back Propagation Neural Networks, whose principles are presented in one chapter of this paper. Results showed that the most important, for the final settlement at the surface above the tunnel, was the time of installation and rigidity of the primary support. On the basis of the calculated final displacements, this support could easily be strengthened in a short time, when necessary.
机译:在过去的十年中,斯洛文尼亚一直在建设公路网。因此,Golovec隧道是斯洛文尼亚首都圈的一部分,是卢布尔雅那与东部和北部最重要的连接点之一。这是一条软岩中的双管三车道隧道,覆盖层小至中等。它遵循NATM的建设给所有有关方面造成了巨大的问题。在施工期间对隧道的支护进行了很好的监测,这为作者提供了一个很好的机会来分析结果。 Golovec隧道是通过围绕卢布尔雅那的,石炭纪的几座小山之一建造的,由碎屑岩组成:粉砂岩,粘土岩和砂岩。戈洛韦奇山属于该区域两个上推力区中的第一个,因此岩石是强烈断层的。隧道监控包括在97个测量区域中进行每日3-D隧道管位移测量,以及使用更复杂的测量设备在隧道内的两个测量区,以监视两个隧道管周围的应力变化和岩石变形。监测地面3-D运动为我们提供了研究隧道施工对其上方地面的影响的机会。本文的第一部分描述了该隧道,其地质,施工过程和监测结果。第二部分包括对监测结果的解释,重点是与隧道周围岩石中开挖损坏区的发展和演化有关的结果。这部分还介绍了作为解释程序基础的反向计算。利用有限差分法通过数值模型计算了隧道应力区的传播和隧道周围直至地表的应力场。隧道位移的演变及其预测是基于反向传播神经网络的,其原理在本文的一章中进行了介绍。结果表明,对于隧道上方地面的最终沉降,最重要的是安装时间和主要支撑的刚度。根据计算出的最终位移,必要时可以很容易地在短时间内加强这种支撑。

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