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Efficiency of embedded barriers to mitigate tunnelling effects

机译:减轻隧道效应的嵌入式障碍效率

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Ground displacements caused by underground excavations in densely urbanised areas often requires the adoption of protective techniques to prevent damage to existing buildings. When the tunnel passes to the side of a potentially affected building, tunnelling-induced settlements can be reduced pre-installing a protective barrier between the tunnel and the building. Usually, this mitigation technique is implemented in practice based on empirical knowledge rather than as a result of a rational design process. This paper presents a numerical study to evaluate the efficiency of different schemes of embedded barriers, using numerical analyses as a tool to understand the main mechanisms of soil-barrier interaction. Two- and three-dimensional FE analyses were carried out assuming a continuous embedded diaphragm wall or a discontinuous piled wall. The barrier was assumed of either infinite or finite horizontal extension, to evaluate the minimum extension needed to obtain in a given section a settlement reduction similar to that attained under plane strain conditions. The effects induced by wall installation and those associated to the presence of a pre-existing building were also accounted for. The results of the analyses permitted to recognise the main factors affecting the efficiency of a protective barrier, providing some guidance for a rational design of the intervention.
机译:在密集城市化地区的地下挖掘引起的地面位移往往需要采用保护技术来防止损坏现有建筑物。当隧道通过潜在受影响的建筑物的一侧时,可以在隧道和建筑物之间预安装保护屏障进行隧道引起的沉降。通常,根据经验知识而不是理性设计过程的结果,在实践中实施这种缓解技术。本文介绍了评价嵌入式障碍等不同方案的效率的数值研究,以使用数值分析作为理解土壤阻隔互动的主要机制的工具。假设连续嵌入式隔膜墙或不连续的堆墙进行两维Fe分析。假设屏障无限或有限的水平延伸,以评估在给定部分中获得的最小延伸,其沉降减少类似于在平面应变条件下实现的沉降减少。墙壁装置和与存在预先存在建筑物相关的效果也被占了。允许分析的结果识别影响保护屏障效率的主要因素,为干预的理性设计提供了一些指导。

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