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Experimental study on the effectiveness of strengthening over-deformed segmental tunnel lining by steel plates

机译:钢板加固过变形节段隧道衬砌有效性的实验研究

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The method of using steel plates to strengthen existing tunnel linings has been widely applied in many tunnel rehabilitation projects around the world. However, the effectiveness of the strengthening resulting from this method is still unclear, especially for conditions when the segmental linings are deformed to a relatively large extent. In this paper, a series of physical model tests conducted in 1-g plane strain conditions were designed to study the strengthening effectiveness of steel plates for over-deformed segmental tunnel linings. The results show that the segmental tunnel linings affected by the ground surface surcharge will deform nonlinearly, as the complex behaviour of the segment joints at different positions lead to a gradual degradation of the tunnel overall performance. Once the deformed segmental tunnel linings were strengthened by steel plates, the stiffness and capacity of the tunnel were improved by 190% and 69%, respectively, compared to those without strengthening. Subsequently, the strengthening effectiveness of tunnels strengthened at different deformation stages are compared quantitatively. It is found that an increase in the tunnel deformation before strengthening led to a decrease in the stiffness and an increase in the total capacity of the tunnel after strengthening, while the increased capacity was less affected.
机译:使用钢板加强现有隧道衬里的方法已广泛应用于世界各地的许多隧道康复项目。然而,该方法由该方法产生的强化的有效性尚不清楚,特别是对于在节段衬里变形到相对较大的程度时的条件。在本文中,设计了一系列在1g平面应变条件下进行的物理模型试验,用于研究钢板用于过变形的节段隧道衬里的强化效果。结果表明,受地面附加费影响的节段隧道衬里将非线性变形,因为不同位置的段关节的复杂性能导致隧道整体性能的逐渐降低。一旦通过钢板加强了变形的节段隧道衬里,与不加强的钢板加强了隧道的刚度和容量,分别提高了190%和69%。随后,定量比较在不同变形阶段以不同变形阶段加强隧道的强化效果。结果发现,在强化之前,隧道变形的增加导致刚度的降低,加强后隧道总容量的增加,而增加的容量较小。

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