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Three-dimensional finite element analysis of the behaviour of cross passage between cast-iron tunnels

机译:铸铁隧道交叉通过行为的三维有限元分析

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The behaviour of cast-iron cross passages in the London Underground was investigated using three-dimensional finite element models. Unlike the behaviour of a full tunnel ring, the structural integrity of a tunnel cross-passage opening relies on support from adjacent linings. In clayey soils, the opening may deform further as the soil stiffness changes from undrained to drained conditions. Degradation of the circumferential bolts and trackbed may also lead to further tunnel movement. A parametric study was conducted to examine the influence of soil stiffness and structural components (e.g., bolts and lintel) on the structural integrity of a tunnel opening. Results show that a lintel effectively transfers the load above the opening to the adjacent linings, and its distortion affects tunnel deformation significantly. If a lintel is not present, both bolts and friction between tunnel segments provide shear resistance to the lining deformation at the tunnel opening against soil loading. Results are compared with field observations made at a critical cross passage in one of the London Underground tunnels. The findings contributed to identifying the critical deformation mechanisms of cast-iron tunnel cross passages, which can be useful during inspection of such structures.
机译:使用三维有限元模型研究了伦敦地铁中铸铁交叉通道的行为。与整个隧道环的行为不同,隧道交叉通道开口的结构完整性取决于相邻衬砌的支撑。在粘性土壤中,当土壤刚度从不排水状态变为排水状态时,开口可能会进一步变形。周向螺栓和履带板的退化也可能导致隧道进一步运动。进行了参数研究,以检查土壤刚度和结构部件(例如螺栓和门)对隧道洞口结构完整性的影响。结果表明,过梁有效地将开口上方的载荷传递到相邻衬砌,其变形显着影响隧道变形。如果没有门,则隧道段之间的螺栓和摩擦力都会为隧道开口处的衬砌变形提供抗剪力,以抵抗土壤载荷。将结果与在伦敦地下隧道之一的关键交叉通道进行的现场观测结果进行比较。这些发现有助于确定铸铁隧道交叉通道的关键变形机制,这对于检查此类结构很有用。

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