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Performance of sheet pile to mitigate liquefaction-induced lateral spreading of loose soil layer under the embankment

机译:板桩的性能减轻液化液化液体液体层的横向散布

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摘要

Liquefaction-induced lateral spreading of the foundation soil severely damages the embankment resting on it. Installation of sheet pile near the toe of the embankment is a widely used technique to mitigate lateral spreading of the foundation soil and the associated damage to the embankment. However, several factors, such as the thickness of the liquefiable foundation, width of sheet pile, and softening of the bearing stratum, that may affect the performance of the sheet pile as seismic retrofit against lateral spreading has not been well studied yet. Therefore, a series of dynamic centrifuge experiments are carried out to study the applicability of sheet pile in various thickness of liquefiable foundation under moderate to strong sequential ground motions. It is found that the sheet pile effectively mitigates the lateral spreading of a thin as well as thick liquefiable foundation. Besides, the sheet pile having the same width of the target area performs equally as a wider sheet pile in mitigating channel-ward ground movement. The experimental results also show that the liquefaction-induced softening of the dense bearing stratum immediately below the loose foundation significantly influences the performance of the sheet pile.
机译:液化引起的基础土壤的横向扩散严重损害了休息的堤防。在堤防脚趾附近安装纸桩是一种广泛使用的技术,可以减轻基础土壤的侧向扩散和对堤防的相关损坏。然而,若干因素,例如液体消泡基础,薄片宽度和轴承层的软化的厚度,这可能影响片材桩的性能作为抗冲击展开的地震改造尚未得到很好的研究。因此,进行了一系列动态离心实验,以研究薄片桩在中等至强序贯地面运动下的各种液体基础中的适用性。发现片桩有效地减轻了薄的横向扩散以及厚的液体成功基础。此外,具有相同目标区域宽度的片状桩在缓解通道地面运动中的宽薄片桩同样地执行。实验结果还表明,液化诱导的致密轴承层的软化在松散的基础下方显着影响了片桩的性能。

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