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Long-term settlement behaviour of metro tunnels in the soft deposits of Shanghai

机译:上海软沉积区地铁隧道的长期沉降行为

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摘要

The Quaternary soft deposits of Shanghai form a multi-aquifer-aquitard system (MAAS) with aquitards of high compressibility and aquifers of high groundwater table. The metro tunnels in Shanghai are generally constructed at a depth of 9-15 m in a very soft clay layer with high water content, high compressibility and low permeability. According to the field monitoring results since completion of construction, significant settlement and substantial differential settlement of tunnels have occurred after more than 10 years' operations. The long-term settlement rate was greater in the first few years and afterwards reduced gradually. Non-uniform settlement was observed in the following situations: (a) under variable soil conditions; (b) between station and tunnel; (c) at cross passages and the ramp section; (d) at tunnel sections crossing below river. The long-term settlement and differential settlement of tunnels has led to serious longitudinal deformation. The deformation pattern of tunnels is step between rings rather than by beam/cylindrical shell bending. Most of the lining rings distort into the shape of a horizontal ellipse (tunnel squat) but a few acquire the shape of a vertical ellipse. Large tunnel deformation has caused ground-water infiltration and the separation of ballastless track bed and lining. Further analysis shows that long-term tunnel settlement is mainly due to urbanisation-induced land subsidence in Shanghai. The magnitude of tunnel settlement is correlated to sublayer settlement rather than ground surface settlement. In the early operational years, post-construction settlement induced by tunnelling and the cyclic loading of trains may contribute significantly to the tunnel settlement. However, at some special places, nearby construction and groundwater infiltration are responsible for the long-term settlement of tunnel.
机译:上海的第四纪软沉积物形成了具有高可压缩性的高含水层和高地下水位的含水层的多含水层-高含水层系统(MAAS)。上海的地铁隧道通常在9-15 m的深度下建造,具有非常软的粘土层,具有高含水量,高压缩性和低渗透性。根据施工结束后的现场监测结果,经过十多年的运营,隧道发生了较大的沉降和较大的差异沉降。最初几年的长期沉降率较高,然后逐渐降低。在以下情况下观察到不均匀沉降:(a)在可变土壤条件下; (b)在车站与隧道之间; (c)在交叉通道和坡道段; (d)在穿越河底的隧道段。隧道的长期沉降和差异沉降导致严重的纵向变形。隧道的变形模式是环之间的台阶,而不是通过梁/圆柱壳弯曲。大部分衬圈变形为水平椭圆形(隧道下蹲),但有少数获得垂直椭圆形的形状。大型隧道变形已导致地下水渗入,无less轨道床和衬砌分离。进一步的分析表明,长期的隧道沉降主要是由于城市化导致的上海地面沉降。隧道沉降的大小与地下沉降有关,而不是与地面沉降有关。在运营初期,隧道和火车的周期性荷载引起的施工后沉降可能会极大地促进隧道沉降。但是,在一些特殊的地方,附近的建筑和地下水的渗入是隧道长期沉降的原因。

著录项

  • 来源
    《Tunnelling and underground space technology》 |2014年第2期|309-323|共15页
  • 作者单位

    Department of Civil Engineering, Shanghai Jiao Tong University, State Key Laboratory of Ocean Engineering, 800 Dong Chuan Road, Minhang District, Shanghai 200240, China;

    Department of Civil Engineering, Shanghai Jiao Tong University, State Key Laboratory of Ocean Engineering, Shanghai 200240, China;

    Ecole des Fonts ParisTech, Laboratoire Navier/CERMES, 6 et 8 avenue Blaise Pascal, 77455 Marne La Vallee cedex 2, France;

    Department of Civil Engineering, Shanghai Jiao Tong University, 800 Dong Chuan Road, Minhang District, Shanghai 200240, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tunnels; Settlement; Time dependence;

    机译:隧道;沉降;时间依赖性;

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