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Analysis of unreinforced and reinforced shallow piled embankments under cyclic loading

机译:循环载荷下未粘接和加强浅桩堤的分析

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Reinforced piled embankments are being increasingly used for construction over soft ground due to their efficiency in reducing potential settlement, speed of construction, and associated cost. Most of the previous studies focused on developing understanding of the behaviour of thick embankments that are loaded with a static surcharge load. Data on the behaviour of shallow piled embankments under cyclic loadings are scarce. In this study, an experimental programme was undertaken using a fully instrumented testing rig to generate data and improve our understanding of the behaviour of unreinforced and reinforced shallow piled embankments subject to monotonic and cyclic loadings that were applied over a predetermined area of the embankment. The experimental results showed that collapse of soil arching is instantaneous and occurs during the first few cycles of load. However, strength was regained, and recovery of the arching effect was observable during further stages of cyclic loadings due to densification of the embankment material and deformation of the soft subsoil. Inclusion of reinforcement layers was found to enhance the performance of load transfer mechanisms by concentrating stresses on pile caps. The results clearly showed a significant reduction in surface settlement, soft subsoil settlement and heaving with increasing numbers of reinforcement layers.
机译:由于其效率降低了潜在沉降,建设速度和相关成本,增强堆堤越来越多地用于施工。以前的大多数研究专注于制定对装载静态附加载荷的厚堤的行为的理解。关于循环负荷下浅堆散乱行为的数据稀缺。在这项研究中,使用完全仪表测试钻机进行了实验计划,以产生数据,并改善我们对经过施加在堤防预定区域的单调和循环载荷的不成熟和加强浅桩堤的行为的理解。实验结果表明,土壤拱起的塌陷是瞬间的,并且在最初的负载循环期间发生。然而,强度被重新恢复,并且由于致密化物质的致密化和软底土的变形而在循环载荷的进一步阶段期间可以观察到拱形效果的恢复。发现包含增强层来增强负载转移机制的性能来集中在桩帽上的胁迫。结果清楚地表明,表面沉降,软底土沉降和随着增强层数量的增加而显着降低。

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