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Performance of Two Anchored Walls Under Cut and Fill Construction Sequences

机译:削减和填充施工序列的两个锚固墙的性能

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摘要

Tieback walls are typically designed using apparent earth pressures that are obtained initially by back-calculating earth pressures from measured support loads for excavation only. For construction activities involving both excavation and backfilling aspects, the use of apparent earth pressures might not be adequate. This paper investigates the performance of two tieback walls constructed using a combination of fill and cut construction sequences. Results obtained from data collected using load cells and strain gages along with the soldier piles of both walls, show the correlation of axial loads and bending moments to construction activities. Results show that some load is transferred to the soldier piles during anchor installation, despite using steel casings to prevent this action. Backfilling behind the wall created significant curvature in the soldier piles based on the measured bending moments. Moreover, results evidence that the apparent earth pressure does not reflect the observed bending moments in the walls. However, a beam model including lateral displacement is presented to represent the measured response in both walls. The results unveil differences in anchor loads estimations, evaluates the appropriateness of apparent earth pressures for the design of tieback walls and provides design recommendations.
机译:RIPBACK壁通常使用明显的接地压力设计,所述明显接地压力最初通过从测量的支撑载荷仅用于挖掘的测量的支撑载荷而获得。对于涉及挖掘和回填方面的施工活动,使用明显的地球压力可能不足。本文调查了使用填充和切割施工序列组合构建的两个阻壁的性能。从使用负载电池和应变计以及两个墙壁的焊料成堆的数据获得的结果显示轴向载荷和弯曲时刻与施工活动的相关性。结果表明,尽管使用钢外壳,但在锚固套件期间,一些负荷在锚固装置中被转移到士兵桩。基于测量的弯矩,墙后面的回填在士兵桩中创造了显着的曲率。此外,结果证据表明,明显的地球压力不会反映墙壁中观察到的弯曲时刻。然而,提出包括横向位移的光束模型以表示两个壁中的测量响应。结果揭示了锚载估计的差异,评估了表观接地压力的适当性,用于设计的阻碍墙壁,并提供设计建议。

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