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Experimental Investigation on Soil Deformation Caused by Pile Buckling in Transparent Media

机译:透明介质中桩屈曲引起土壤变形的实验研究

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摘要

Transparent media and particle image velocimetry (PIV) approaches were employed to measure the buckling deformation of fully embedded model piles and the consequent soil deformation under different constraints in a nonintrusive manner. Transparent media (also called transparent soils) are made of fused quartz and a pore solution, the refractive index of which is matched with that of fused quartz. A laser light sheet was employed to irradiate the transport soil and capture digital images of the buckling deformation of the model piles, and PIV was used to obtain the deformation of pile foundation and soil mass. The results show that the effect of the constraint mode at the pile tip on the buckling curve depends on the change in pile strength and slenderness ratio, the movement of soil on both sides of the maximum buckling point fits Rankine's earth pressure theory, and compared with single-pile buckling, the buckling deformation curve of multiple piles shows an elevated maximum deflection point.
机译:采用透明介质和粒子图像测速(PIV)方法,以非侵入性的方式测量了在不同约束条件下全埋入式模型桩的屈曲变形以及随之产生的土壤变形。透明介质(也称为透明土壤)由熔融石英和多孔溶液制成,其折射率与熔融石英的折射率匹配。用激光片照射运输的土壤并捕获模型桩屈曲变形的数字图像,并使用PIV获得桩基和土体的变形。结果表明,桩端约束模式对屈曲曲线的影响取决于桩体强度和细长比的变化,最大屈曲点两侧的土体运动符合兰金的土压力理论,并与单桩屈曲时,多桩的屈曲变形曲线显示出最大挠曲点升高。

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