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首页> 外文期刊>Journal of Performance of Constructed Facilities >Centrifugal Investigation of Excavation Adjacent to Existing Composite Foundation
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Centrifugal Investigation of Excavation Adjacent to Existing Composite Foundation

机译:现有复合地基附近的离心调查

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This paper discusses an experimental investigation, by centrifuge tests, of excavation behavior adjacent to existing composite foundations, with the aim to understand excavation-induced lateral earth pressures and deformation mechanisms and so assist the design of preliminary retaining structures for excavation. In particular, the behavior of excavated composite foundations was investigated based on centrifuge model tests. Experimental studies concentrated on excavation-induced lateral earth pressures, bending moments of retaining structures, lateral deformation, and ground settlement. This further led to a detailed investigation of the resulting deformation mechanism of excavated composite foundations and its influence on the safety of overlying structures and the economic design of side retaining structures. Moreover, the effects of different surcharge load amplitudes (i.e.,representing overlying buildings of different heights) on the behavior of excavated composite foundations were analyzed through parametric experimental studies. Based on the experimental results, the following conclusions can be drawn: (1)excavation-induced earth pressures in the composite foundation are smaller than the Rankine active earth pressures in the depth range of the excavation, indicating that the Rankine method for predicting active earth pressure is conservative for the excavation problems in a composite foundation; (2)the excavation-induced bending moment is observed to peak at approximately 3m below the corresponding excavation bottom; (3)the relation between excavation-induced settlement and distance from the excavation can be assumed to be exponential; (4)greater surface load induces larger lateral earth pressure amplitudes and bending moments on the retaining pile raft, whereas the position of the maximum bending moment is consistent regardless of the load amplitude.
机译:本文讨论了对现有复合基础附近的离心机的挖掘行为进行了实验研究,目的是了解挖掘引起的横向接地压力和变形机制,因此协助设计初步保持结构进行挖掘。特别地,基于离心机模型试验研究了挖掘复合基础的行为。实验研究集中在挖掘诱导的横向接地压力下,保持结构的弯曲力矩,横向变形和地面沉降。这进一步导致了对挖掘复合基础的所得变形机制的详细研究及其对覆盖结构安全性的影响以及侧保持结构的经济设计。此外,通过参数实验研究分析了不同附加载荷幅度(即,代表不同高度的覆盖建筑物的覆盖建筑物)的影响。基于实验结果,可以绘制以下结论:(1)复合地基中的挖掘诱导的接地压力小于挖掘的深度范围内的朗肯有源土压力,表明预测活性地球的朗肯方法复合地基中的挖掘问题是保守的压力; (2)观察挖掘诱导的弯曲力矩在相应的挖掘底部约3米的峰值下观察到峰值; (3)可以假设挖掘诱导的结算与挖掘距离之间的关系是指数的; (4)更大的表面负荷在保持桩筏上诱导较大的横向接地压力幅度和弯曲的时刻,而最大弯矩的位置是一致的,而不管负载幅度如何。

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