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首页> 外文期刊>Canadian Geotechnical Journal >Load-transfer platform behaviour in embankments supported on semi-rigid columns: implications of the ground reaction curve
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Load-transfer platform behaviour in embankments supported on semi-rigid columns: implications of the ground reaction curve

机译:半刚性柱支持的堤防中的负载转移平台行为:地面反应曲线的含义

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摘要

Post-construction data from an instrumented geosynthetic reinforced column supported embankment (GRCSE) on drilled displacement columns in Melbourne, Australia, show the time-dependent development of arching over the 2 year monitoring period and a strong relationship between the development of arching stresses and subsoil settlement. A ground reaction curve is adopted to describe the development of arching stresses and good agreement is found for the period observed thus far. Predictions of arching stresses and load-transfer platform behaviour are presented for the remaining design life. Four phases of arching stress development (initial, maximum, load-recovery, and creep strain phases) are shown to describe the time-dependent, and subsoil-dependent, development of arching stresses that can be expected to occur in many field embankments. Of the four phases, the load-recovery phase is the most important with respect to load-transfer platform design, as it predicts the breakdown of arching stresses in the long term due to increasing subsoil settlement. This has important implications in assessing the appropriate design stress for the geosynthetic reinforcement layers, but also the deformation of the load-transfer platform in the long term.
机译:从澳大利亚墨尔本墨尔本钻出的位移柱的施工后的地磁增强专栏的后施工数据,展示了2年监测期间拱形拱门的时间依赖性发展,以及拱形应力和底层的发展之间存在牢固的关系沉降。采用地面反应曲线来描述拱形应力的发展,并且发现迄今为止观察到的时间良好的协议。为剩余的设计寿命提供了对拱形应力和负载转移平台行为的预测。示出了四个拱形应力开发(初始,最大,负载恢复和蠕变应变阶段)的阶段描述了依赖于时间依赖性和替代的拱形应力的发展,这些拱形应力在许多场地堤中发生。在四个阶段中,负载恢复阶段是对负载转移平台设计最重要的,因为它在长期内预测了由于底层沉降而长期以来的长期突破。这对评估土工合成加强层的适当设计应力来说具有重要意义,也具有长期负载转移平台的变形。

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