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Performance of a Long Pipe Roof for a Large Span Shallow Tunnel below an Existing Highway

机译:既有公路下大跨度浅埋隧道长管屋顶的性能

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The pipe roof reinforcement is usually used to stabilize the tunnel arch for tunneling in weak ground section or passing below highway. In this study, large scale pipe-roof (85m long and Φ 159 mm) was used to enhance the Shitougang tunnel where a railway tunnel passes below the Hengyang-Kunming Highway in China. The deformation of the pipe was measured by a series of strain gauges, and meanwhile, a three dimensional numerical analysis was carried out to investigate the mechanical performance of the long and larger pipe roof. The measured results are in good agreement with the numerical results. They both show that the stress distribution of the pipe roof can be divided into three sections: tension section ahead of tunnel face, compressive section behind the tunnel face and tension section near the entrance casing arch. The peak stress value occurs close to the entrance casing arch and a certain distance ahead and behind the tunnel face, respectively. This analysis illustrates the mechanical response of large and long pipe roof reinforcement used for a shallow tunnel passing below highway.
机译:管顶加固通常用于稳定隧道拱,以便在弱地段开挖或在公路下方通过。在这项研究中,大型管道屋顶(长85m,直径Φ159 mm)被用于增强石头岗隧道,该铁路隧道从中国的衡阳至昆明高速公路下方通过。用一系列的应变仪测量管道的变形,同时进行三维数值分析,研究长而大的管道顶板的力学性能。测量结果与数值结果吻合良好。它们都表明管顶的应力分布可分为三个部分:隧道面前方的拉伸段,隧道面后的压缩段和入口套管拱附近的张力段。峰值应力值分别出现在靠近入口套管拱的位置,并分别位于隧道面的前方和后方一定距离处。该分析说明了用于高速公路下方的浅埋隧道的大型长管屋盖钢筋的机械响应。

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