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首页> 外文期刊>Proceedings of the Institution of Civil Engineers >Performance of tied-together piled foundation in liquefiable soils: New Zealand case study
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Performance of tied-together piled foundation in liquefiable soils: New Zealand case study

机译:在一起的桩基在液化土壤中的性能:新西兰案例研究

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摘要

Piled foundations are widely used to transfer structural loads through a weak stratum to competent underlying ground. In earthquake-prone areas, these piles have to consider kinematic loading and potential loss of bearing where there is an added liquefaction potential. Earlier practice in parts of Christchurch, New Zealand, did not acknowledge the potential loss of bearing in liquefiable sand layers with numerous instances of driven piles through peat layers bearing on liquefiable sands with consequential damage following the earthquakes of the Canterbury earthquake sequence. Localised instances of screw-type piles installed into liquefiable sands are also evident where the design was driven by vertical structural load specification with torque readings used to confirm bearing capacity. This paper presents a case study of performance of a two-storey 3000 m2 building complex on piled foundations through peat, where the original buildings were founded on driven piles generally into liquefiable layers and later extensions on screw piles of varying depths. Particular focus is given to an approximate 500 m~2 extension founded on screw piles of varying depths through peat and generally embedded in underlying liquefiable sand that performed surprisingly better than expected, presumably because of a tied-together foundation system.
机译:桩基被广泛用于将结构载荷通过薄弱的地层传递到地下主管地面。在地震多发地区,在增加液化潜力的地方,这些桩必须考虑运动载荷和轴承的潜在损失。在新西兰克赖斯特彻奇的部分地区,较早的实践并没有认识到在坎特伯雷地震序列的地震之后,通过泥土层承载在可液化沙滩上的泥炭层造成无数桩打桩的情况下,可液化砂层中的轴承潜在损失。安装在可液化沙子中的螺旋桩的局部情况也很明显,这种设计是由垂直结构载荷规范驱动的,扭矩读数用于确认承载能力。本文介绍了一个通过泥炭在桩基上建造的两层楼3000平方米建筑群的案例研究,其中最初的建筑物通常是在打入的桩基础上打入可液化层,然后在不同深度的螺旋桩上扩建。尤其要注意的是大约500 m〜2的延伸量,该延伸量基于穿过泥炭的不同深度的螺旋桩,并且通常埋在下面的可液化沙子中,其表现出乎意料的好于预期,这大概是由于基础系统捆绑在一起。

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