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Hybrid soil nail, tieback, and soldier pile wall - case history and numerical simulation

机译:混合土钉,反冲和士兵桩墙-案例历史和数值模拟

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Excavations in congested urban areas are often carried out near and below the existing buildings. The primary cause of damages to nearby buildings is often associated with the excavation completed near and below the existing buildings. It is therefore imperative to minimise shoring wall displacement during the excavation. The paper describes the application of the hybrid soldier pile, tieback and soil nail shoring wall to reduce wall displacement below an acceptable limit. The project involved the construction of a 39-storey building with 5 levels of below-grade parking. The shoring of the below-grade parking was implemented with soil nails in the upper portion of the wall to prevent damages to the existing utilities. Tieback anchor was used below the existing building to limit the movements in the existing building. A three-dimensional non-linear analysis was used to study the behaviour of hybrid shoring wall. Field measurements on wall displacements and soil nail forces confirm the effect of the hybrid wall. However, numerical analyses indicated that the wall would have been constructed without soil nail due to a narrow space between the wall and existing building. This paper illustrates how detailed numerical simulation can be applied practically to design a shoring system in urban areas.
机译:在拥挤的城市地区,开挖往往在现有建筑物的附近进行。损坏附近建筑物的主要原因通常与在现有建筑物附近和下方完成的开挖有关。因此,在开挖过程中必须使支撑壁的位移最小化。该论文描述了混合式士兵桩,系杆和土钉支护墙的应用,以将墙位移减少到可接受的极限以下。该项目涉及建造一座39层高的建筑,其中有5个地下停车位。地下停车场的支撑是在墙壁的上部用土钉钉住的,以防止损坏现有的公用设施。在现有建筑物下方使用系背锚来限制现有建筑物的移动。使用三维非线性分析来研究混合支撑墙的性能。墙体位移和土钉力的现场测量证实了混合墙的效果。但是,数值分析表明,由于墙与现有建筑物之间的狭窄空间,本来可以在没有土钉的情况下建造墙。本文说明了如何将详细的数值模拟实际应用于设计市区的支护系统。

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