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Centrifuge study on the effect of the SCP improvement geometry on the mitigation of liquefaction-induced embankment settlement

机译:SCP改善几何学对液化诱导堤防沉降减轻效果的离心研究

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摘要

Liquefaction of foundation soil causes significant damage to infrastructures. The sand compaction pile (SCP) method is a countermeasure against liquefaction to densify the ground by installing dense sand piles. In recent years, an innovative method has been developed to install sand piles into the ground at any angle. In this study, a series of dynamic centrifuge tests are carried out to investigate the effects of the angle of the SCP improvement zone on mitigating the liquefaction-induced settlement of embankment crests. The lateral displacement beneath the embankment toes is mitigated by the presence of the improvement zone installed in the foundation ground. In particular, the case with a 50 degrees improvement zone is the most effective in mitigating lateral displacement and contributes to the lower settlement of the embankment.
机译:基础土壤的液化导致对基础设施的重大损害。 砂压缩桩(SCP)方法是防液化的对策,通过安装密集的砂桩来致密地致密地。 近年来,已经开发了一种创新的方法,以便以任何角度将砂桩安装到地面。 在该研究中,进行了一系列动态离心机测试,以研究SCP改进区的角度对缓解液化嵴的液化沉降的影响。 通过在基础地面安装的改进区域的存在,可以减轻堤防脚趾下方的横向位移。 特别地,具有50度改善区域的情况是减轻横向位移最有效的,并且有助于堤防的较低沉降。

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