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Effect of Improvement and Application of Composite Prefabricated Vertical Drain Method in Marine Soft Ground: A Case Study

机译:复合预制垂直漏极法在海洋软土地区的改进与应用的影响 - 以案例研究

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摘要

One of the commonly used techniques to improve marine soft ground is the drainage consolidation method by plastic board drains (PBDs). But some complex marine soft ground will cause construction inconvenience of PBDs in certain areas of these sites, thus affecting the improvement effect. An alternative possible approach to overcoming these deficiencies may be the combination of PBDs and sand wick drains (SWDs) (i.e., composite prefabricated vertical drains (CPVDs)) as vertical drainage channels in the same site. In order to verify the suitability and performance of this method in marine soft ground improvement, a case study was performed based on the field monitoring and construction of the marine soft ground of an intercity express railway project in China. The construction procedure using the CPVD system, the field monitoring instrumentation scheme, and the design of fill surcharge level were described, and the field monitoring data were presented. The settlement characteristics, dissipation features of pore water pressure, and the horizontal movement pattern were assessed. In addition, predictions of ultimate settlement, postconstruction settlement, and consolidation degree were discussed by applying a modified hyperbolic model. The results show that the marine ground improved by the CPVD system is suitable for the construction of intercity express railway and high-speed railway. The improvement construction period of complex marine soft ground will be greatly shortened by the proposed parallel construction programme. This work will provide technical supports and application reference for the improvement of the similar marine soft ground.
机译:改善海洋软接地的常用技术之一是塑料板排水管(PBD)排水整合方法。但是一些复杂的海洋软接地将导致施工在这些网站的某些地区的PBD不便,从而影响改善效果。克服这些缺陷的替代可能方法可以是PBD和砂芯漏极(SWDS)(即,复合预制垂直排水管(CPVDS))作为同一站点中的垂直排水通道的组合。为了验证这种方法在海洋软接种改进中的适用性和性能,基于中国跨越铁路项目的海洋软接地的现场监测和建设进行了案例研究。描述了使用CPVD系统,现场监测仪表方案和填充附加费级别设计的施工过程,并提出了现场监测数据。评估孔隙水压的沉降特性,散热特征和水平运动模式。此外,通过应用修改的双曲模型讨论了最终沉降,后施加结算和整合程度的预测。结果表明,CPVD系统改善的海地适用于跨越铁路和高速铁路的建设。通过拟议的平行施工计划将大大缩短复杂海洋软接地的改善施工期。这项工作将为改善类似的海洋软接地提供技术支持和应用参考。

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  • 来源
    《Advances in civil engineering》 |2019年第8期|6097504.1-6097504.18|共18页
  • 作者

    Jiang Jianqing; Liu Reqiang;

  • 作者单位

    Hunan City Univ 518 Yingbin Rd Yiyang 413000 Peoples R China;

    Guangdong Prov Architectural Engn Machinery Const Guangzhou 510500 Guangdong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 22:05:20

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