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首页> 外文期刊>Bulletin of engineering geology and the environment >Protective effect of partition excavations of a large-deep foundation pit on adjacent tunnels in soft soils: a case study
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Protective effect of partition excavations of a large-deep foundation pit on adjacent tunnels in soft soils: a case study

机译:大深基坑分配挖掘在软土中相邻隧道上的保护作用 - 以案例研究

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摘要

The safety of metro tunnels is seriously threatened when protective measures are not well organized during adjacent foundation pit excavations in soft ground. To date, the protective effects obtained from adopting partition excavations and a deep diaphragm wall in large-deep excavations have not been fully understood. In this study, 3D numerical analyses incorporating the hypoplastic constitutive model, which can take into account the small strain stiffness of soil, were performed to reproduce tunnel responses subjected to lateral excavations. The mechanism of crack development in tunnel lining, the protective effects of partition excavations, and diaphragm walls are investigated in sequence. The obtained results indicate that crack development in tunnel lining is mainly dominated by lining deformation in the longitudinal direction, instead of deformations in the radial and circumferential directions. Through firstly excavating the nearest excavation to the tunnel that is small in size, the tunnel displacement and bending moment are reduced, since the system rigidity of the nearest excavation increases significantly after applying supporting structures. By contrast, such reduction is found to be detrimental when the nearest excavation is large in size and is performed at the end. This indicates that a comprehensive consideration of both the order and the size of partition excavations is important. The inhibiting effect on the tunnel displacement caused by increasing the depth of the diaphragm wall is found to function nonlinearly, depending highly on its referred depth. Additionally, this effect is more effective than increasing the width of the diaphragm wall under constant volume conditions.
机译:当在软土地基的基础坑挖掘过程中,保护措施并不适合时,地铁隧道的安全受到严重威胁。迄今为止,迄今为止,采用分区挖掘和深层膜片壁的保护效果尚未得到完全理解。在该研究中,掺入了硬质型结构型模型的3D数值分析,其可以考虑到土壤的小应变刚度,以再现横向开挖的隧道反应。隧道衬砌裂纹发育机理,序列研究了分配挖掘和隔膜壁的保护作用。所获得的结果表明,隧道衬里的裂纹开发主要由纵向衬里变形,而不是在径向和圆周方向上的变形。通过首先将最近的挖掘挖掘到尺寸小的隧道,隧道位移和弯矩减小,因为在施加支撑结构后最近的挖掘的系统刚度显着增加。相比之下,当最近的挖掘尺寸很大并且在最后进行时,发现这种减少是有害的。这表明对秩序和分区挖掘量的全面考虑很重要。发现通过增加隔膜壁的深度引起的隧道位移的抑制作用,这是非线性的,这取决于其引用深度的高度。另外,这种效果比在恒定体积条件下增加隔膜壁的宽度更有效。

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