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An Underwater Plate Load Testing for the Sand Compaction Pile Ground at Island-Tunnel Conversion Area

机译:岛隧转换区压实桩地面的水下平板荷载试验

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摘要

The sand compaction pile (SCP) method is a widely used ground improvement technique, especially in offshore engineering. The thick, soft marine clay in Hong Kong-Zhuhai-Macau Bridge was reinforced using this method at its island-tunnel conversion area. A large-scale plate loading test was conducted to evaluate the bearing capacity and deformability of the SCP composite ground. An improved settlement result was obtained by utilizing a high-sensitivity liquid level sensor system underwater. The research results showed that the stress concentration ratio of the SCP composite ground was closely related to the load level, which decreased when the load level increased. When the stress stayed constant, the ratio was found to reduce gradually to a certain value. Three computing theories were discussed in the bearing capacity calculation of the SCP composite ground. The results calculated by the Hughes and Withers method were more consistent with the field experimental results. For the settlement calculation, it was found that the results were closer to the experiment results calculated by Aboshi's first empirical formula. The experiment results differed greatly when calculated by Aboshi's second empirical formula and the modified method proposed by Ahn and Kim. The study may provide some useful data for marine SCP composite ground designs and underwater field testing techniques.
机译:压实桩(SCP)方法是一种广泛使用的地面改良技术,尤其是在海上工程中。港珠澳大桥的岛-隧道转换区采用这种方法加固了厚而柔软的海洋黏土。进行了大规模的板载试验,以评估SCP复合地面的承载能力和可变形性。通过在水下使用高灵敏度液位传感器系统获得了改善的沉降结果。研究结果表明,SCP复合地基的应力集中比与荷载水平密切相关,当荷载水平增大时,应力集中率减小。当应力保持恒定时,发现该比率逐渐降低至一定值。 SCP复合地基承载力计算中讨论了三种计算理论。休斯和威瑟斯方法计算的结果与现场实验结果更加一致。对于沉降计算,发现结果更接近由Aboshi的第一个经验公式计算的实验结果。用Aboshi的第二个经验公式和Ahn和Kim提出的改进方法计算得出的实验结果差异很大。该研究可能为海洋SCP复合地面设计和水下现场测试技术提供一些有用的数据。

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