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Soft clay foundation improvement with drainage and geo-inclusions, with special reference to the performance of embankments and transportation systems

机译:通过排水和土工包裹体改善软土基础,尤其要考虑路堤和运输系统的性能

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摘要

In this paper, the geotechnical aspects of soft clay improvement using prefabricated vertical drains (PVDs) with special reference to embankments will be demonstrated. The Cavity Expansion Theory is employed to predict the smear zone caused by the installation of mandrel driven vertical drains. Analytical and Numerical analyses adopting the equivalent plane strain solution are conducted to predict the excess pore pressures, lateral and vertical displacements. The advantages and limitations of vacuum application through vertical drains avoiding the need for high surcharge embankments are discussed using the proposed solutions. A few selected case histories are discussed and analyzed, including the site of the 2nd Bangkok International Airport, the coastal stretch of Muar Clay Plains in Malaysia and the Sunshine embankment, Australia. The predictions are compared with the available field data, verifying that the equivalent plane strain model can be used confidently with acceptable accuracy. Cyclic loading of PVDs is also examined in the laboratory in a manner appropriate for railway environments. It is shown that short PVDs can dissipate excess pore pressure as fast as they are built up under repeated loading conditions. Some selected on-ground experience of the first Author through the Ministry of Science and National Science Foundation during post-tsunami reconstruction efforts is described with specific reference to appropriate ground improvement requirements.
机译:在本文中,将演示使用预制垂直排水沟(PVD)尤其是对路堤进行软粘土改良的岩土工程方面。腔膨胀理论被用来预测由心轴驱动的垂直排水装置的安装所引起的拖尾区。采用等效平面应变解进行了分析和数值分析,以预测过大的孔隙压力,横向和垂直位移。使用提出的解决方案讨论了通过垂直排水施加真空的优点和局限性,避免了对高附加费路堤的需要。讨论和分析了一些选定的案例历史,包括第二曼谷国际机场的站点,马来西亚麻坡粘土平原的沿海地带和澳大利亚的阳光路堤。将预测与可用的现场数据进行比较,验证等效平面应变模型可以放心地以可接受的精度使用。 PVD的循环载荷也可以在实验室中以适合铁路环境的方式进行检查。结果表明,短的PVD可以在重复加载条件下迅速消散多余的孔隙压力。描述了第一作者在海啸后的重建工作中通过科学部和国家科学基金会选择的一些地面经验,并具体参考了适当的地面改善要求。

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