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首页> 外文期刊>Acta geodynamica et geomaterialia >DISPLACEMENT FIELD AROUND AN UPLIFTING INNOVATED PLATE ANCHOR
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DISPLACEMENT FIELD AROUND AN UPLIFTING INNOVATED PLATE ANCHOR

机译:升高创新的板锚周围的位移场

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摘要

This paper introduces an innovated plate anchor, increasing its bearing section area during uplift. In this experimental study, the influences of embedment depth of plate anchor and soil surface condition (restricted or free) on sand deformation field during uplift test are investigated. In order to study the soil deformation around the anchor, Particle Image Velocimetry (PIV) is used. The experimental setup consists of a camera, a new designed box, load cell, encoder and computer. During the uplift test on physical models, images are captured and used by PIV to depict the soil displacement field. Based on this study, it is found that pullout capacity and sand deformation zone are significantly influenced by anchor embedment depth. In shallow anchors, sand deformation zone lines are similar to a curve and cross the soil surface; however, in deep anchors, sand deformation zone is a bulb-shaped zone that extends from anchor to a distance of approximately two times its diameter above.
机译:本文介绍了一种创新的板锚,在隆起期间增加其轴承部分区域。 在该实验研究中,研究了在提升试验期间的板锚和土壤表面条件(限制性或自由)对挤出试验期间的嵌入深度(限制或自由)的影响。 为了研究锚定周围的土壤变形,使用颗粒图像速度(PIV)。 实验设置由相机,新设计的盒子,装载单元,编码器和计算机组成。 在物理模型的提升测试期间,PIV捕获并使用图像以描绘土壤排量场。 基于这项研究,发现拉出能力和砂变形区受到锚定嵌入深度的显着影响。 在浅锚,砂变形区线类似于曲线并通过土壤表面; 然而,在深锚处,砂变形区是灯泡形区,从锚延伸到其直径约两倍的距离。

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