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Study of Surface Displacements on Tunnelling under Buildings Using 3DEC Numerical Modelling

机译:基于3DEC数值模拟的建筑物下隧道地表位移研究。

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Underground structures at shallow depths are often constructed for metro lines, either in loose or dense layered soils. Tunnelling in urban areas is predominantly under surface structures and on tunnelling, innumerable changes in the form of distortion take place in strata surrounding the tunnel. Extent of displacement/damage to buildings or the tunnel-soil structure interaction depends on the type of building and nature of strata. Effect on displacements has been less studied in granular soils compared to other types of soils like clays. In this paper, parametric studies are conducted to find the displacements at surface, in granular soil conditions, due to varying building storeys and building eccentricities from the tunnel centre line. Effect of presence of geosynthetic layer under footings is further studied. Prior to the parametric studies, validity of the model used is checked with field data available for a stretch of tunnel in South India. Results of simulation studies reveal that inclusion of building reduces displacements at the surface in the dense strata. In very dense strata, the displacements increase as compared to the case without a building. As the centre of the building moves away from the tunnel centre line, settlement above the tunnel matches displacements in the case without building. Applicability of 3DEC software is checked with respect to the present study.
机译:浅深度的地下结构通常用于地铁线路,无论是在松散的还是密集的分层土壤中。城市地区的隧道施工主要是在地下结构下进行,在隧道施工中,隧道周围地层发生了无数种变形形式的变化。建筑物的位移/破坏或隧道-土壤结构相互作用的程度取决于建筑物的类型和地层的性质。与其他类型的土壤(如粘土)相比,在颗粒状土壤中对位移的影响研究较少。在本文中,进行了参数研究,以发现由于颗粒状土层和隧道中心线的建筑物偏心率变化而导致的粒状土壤条件下的表面位移。进一步研究了在脚下存在土工合成层的影响。在进行参数研究之前,使用可用于印度南部一段隧道的现场数据检查所用模型的有效性。模拟研究的结果表明,将建筑物包括在内可以减少致密地层表面的位移。在非常密集的地层中,与没有建筑物的情况相比,位移增加。当建筑物中心远离隧道中心线时,隧道上方的沉降与没有建筑物的情况下的位移匹配。关于本研究检查了3DEC软件的适用性。

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