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Suction drain as a low carbon ground improvement technique: Proof-of-concept at the laboratory scale

机译:抽气作为低碳地面改良技术:实验室规模的概念验证

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摘要

The most common soil reinforcement methods used in tunnelling, such as jet grouting, fiberglass reinforcement and ground freezing, leave spoils into the ground and have high costs of implementation. On the other hand, preloading methods for soils improvement require long construction periods and limit the enhancement of the undrained shear strength to the applied surcharge load or vacuum load. This paper presents the concept of suction drain as an innovative technique for temporary stabilisation of geostructures in soft clayey soils, which overcomes the inconvenience of current soil reinforcement techniques and the limitation of the preloading. Based on suction generated in the ground by the evaporation from pre-drilled holes, the suction drain enables the enhancement of the undrained shear strength in soft clayey soils. The concept and its validation at mock-up scale level are presented in this study. The experimental investigation assessed the capacity of the suction drain to reduce the soil water content via soil water evaporation induced by forced ventilation. The mock-up scale test was then validated numerically via FEM modelling. Finally, the suction drain modelling was extended to an ideal case of tunnelling for assessing the potential impact of the suction drain on undrained shear strength and, hence, on tunnel face stability.
机译:隧道施工中最常用的土壤加固方法,例如旋喷灌浆,玻璃纤维加固和地面冻结,会把泥土留在地下,并且实施成本很高。另一方面,用于土壤改良的预压方法需要较长的施工时间,并将不排水抗剪强度的提高限制在所施加的附加载荷或真空载荷上。本文介绍了吸水排水的概念,它是一种用于软黏土中土工结构暂时稳定的创新技术,它克服了现有土壤加固技术的不便之处以及预加载的局限性。基于从预钻孔中蒸发产生的地面吸力,吸水排水口可增强软黏土中不排水的剪切强度。在这项研究中提出了该概念及其在模型规模上的验证。实验研究评估了引水管通过强迫通风引起的土壤水分蒸发减少土壤水分的能力。然后通过FEM建模对模型规模测试进行数字验证。最后,将吸水排水管模型扩展到隧道的理想情况,以评估吸水排水管对不排水抗剪强度的潜在影响,从而对隧道面的稳定性产生潜在影响。

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  • 来源
    《Tunnelling and underground space technology》 |2020年第5期|103361.1-103361.18|共18页
  • 作者

  • 作者单位

    UNOPS Hlth Safety Social & Environm Management Copenhagen Denmark|Univ Strathclyde Dept Civil & Environm Engn James Weir Bldg Level 5 75 Montrose St Glasgow G1 1XJ Lanark Scotland|COWI UK Ltd Glasgow Lanark Scotland;

    Univ Strathclyde Dept Civil & Environm Engn James Weir Bldg Level 5 75 Montrose St Glasgow G1 1XJ Lanark Scotland;

    COWI UK Ltd Glasgow Lanark Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Clay; Suction; Undrained shear strength; Tunnel face stability;

    机译:粘土;吸力不排水的剪切强度;隧道工作面稳定性;

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