隧道与地下桩基建筑相互作用的有限元分析

DO ThaiNgoc, Anatoliy Grigorevich, Nikita Andreevich Protosenya, Vi Belyakov, Quang Van Van PHAM, Nguyen
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引用次数: 0

摘要

:城市的发展导致对包括隧道建设在内的基础设施的需求增加。由于城市地面通常是软土,因此隧道施工可能会导致地面沉降,破坏周围的结构。因此,仔细考虑隧道施工对隧道周围结构的设计、施工、运营和风险评估的影响是非常重要的。本文采用有限元法研究了河内地铁 03 号线隧道开挖对桩基下建筑物的影响。这些结果表明,在桩群中最靠近隧道的前桩,也就是桩群中最先加载的桩,其内力和位移最大。研究了两个参数:隧道埋深和隧道中心线到桩下建筑物的距离。结果发现,隧道轴线到桩下建筑物的距离增加时,桩的内力和位移都会减小。这些内力和位移随着隧道埋深的增加而增大。隧道衬砌的法向力和弯矩随着隧道埋深的增加而增大,而当隧道轴线到桩下建筑物的距离减小时,隧道衬砌的法向力增大,弯矩减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Finite Element Analysis of the Tunnel-Beneath Piled Building Interaction
: The growth of cities induced an increased demand for infrastructure including tunnel constructions. Because the urban ground usually is soft soil therefore tunnel constructions may cause ground settlement and damage the structures around. So, it is very important to carefully consider the tunnel construction effect on the design, construction, operation, and risk assessment of structures around the tunnel. In this paper, the finite element method was used to study the influence of the tunnel excavation on beneath piled buildings at the Hanoi metro line 03. These results indicate that the internal forces and displacements of the pile are greatest for the front pile closest to the tunnel in the group, which is the first pile to be loaded in the group. Two parameters: the tunnel burial depth and the distance from the tunnel centreline to the beneath-piled building have been investigated. These results found that the distance from the tunnel axis to the beneath piled building increases, while both the internal forces and displacements of the pile decrease. These internal forces and displacements increase with greater tunnel burial depth. The magnitude of normal forces and bending moments in the tunnel lining increase as the tunnel burial depth increases, while normal forces increase and bending moments in the tunnel lining decrease when the distance from the tunnel axis to the beneath-piled building decreases.
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