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Thermally-induced longitudinal decompression of simultaneously backfill

机译:同时回填的热诱导纵向减压

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The longitudinal compression of concrete segmental linings (CSLs) can enhance the durability of the tunnel structure. The compressive force reduces the risk of water ingress through ring joints and the differential displacements between adjacent rings. The hydraulic jacks of tunnel boring machines (TBMs) compress longitudinally the tunnel tube during construction, but subsequent longitudinal movements in the lining can cause the migration of the prestressing forces to the ground. One significant, yet disregarded, contributor to the longitudinal decompression of CSLs is the time-varying lining temperatures induced by tunnelling, particularly in CSLs that are simultaneously backfilled with cementitious grouts. This paper proposes analytical solutions for the prediction of longitudinal mechanical strains thermally-induced in CSLs during and after tunnelling. The solutions are compared with field data collected from the Crossrail's Thames tunnel. It is proved that time-varying lining temperatures in simultaneously backfill grouted CSLs are responsible for the substantial loss of longitudinal compression exhibited in the months following construction. Tunnels subjected to moderate overburden pressures may experience a total loss of compressive forces at thermal equilibrium. The magnitude of the thermal decompression depends mainly on the temperature profile developed behind the TBM, which is in turn governed by the grout exothermic properties and ambient temperatures. A method for the assessment of longitudinal forces over the CSL design life is proposed for asset owners of future tunnels.
机译:混凝土分段衬砌(CSL)的纵向压缩可增强隧道结构的耐久性。压缩力降低了水通过环接头进入的风险以及相邻环之间的差异位移。隧道掘进机(TBM)的液压千斤顶在施工过程中会纵向压缩隧道管,但是衬砌中随后的纵向运动会导致预应力向地面的迁移。 CSLs纵向减压的一个重要但仍被忽略的因素是隧道效应引起的随时间变化的衬砌温度,特别是在同时充填水泥浆的CSLs中。本文提出了解析解决方案,用于预测在开挖期间和之后在CSL中热诱导的纵向机械应变。将解决方案与从Crossrail的Thames隧道收集的现场数据进行比较。事实证明,在同时回填灌浆的CSL中,随时间变化的衬里温度是造成施工后数月内纵向压缩力显着下降的原因。承受中等上覆压力的隧道在热平衡时可能会完全失去压缩力。热减压的幅度主要取决于TBM后面形成的温度曲线,而温度曲线又受灌浆放热特性和环境温度的控制。针对未来隧道的资产所有者,提出了一种在CSL设计寿命内评估纵向力的方法。

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