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DEM study of particle scale and penetration rate on the installation mechanisms of screw piles in sand

机译:浅谈颗粒尺度和渗透率对沙子螺钉桩安装机制的研究

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摘要

Screw piles are efficient anchors to sustain large uplift loads and can be installed with low noise or vibration. Screw piles dimensions are currently increasing, renewing research interest to reduce the installation requirements (torque and crowd or vertical force). The Discrete Element Method (DEM) is an ideal technique to investigate the complex soil behaviour during screw pile installation. Different techniques such as particle upscaling or increase of pile penetration rate have been used to reduce the CPU time to more acceptable durations (e.g. few days or weeks). This paper investigates how such techniques can affect the accuracy of the results and change the installation mechanisms. Results show that maintaining a low particle scaling factor is essential to reproduce the correct mechanism at low pile advancement ratio (AR, defined as the vertical displacement per rotation divided by the helix pitch). The pile overflighting (AR 1) creates an upwards movement of particles, which in turn creates some tension in the pile. Smaller advancement ratios require smaller particles to accurately capture this effect. Results also show that the pile penetration rate must be maintained relatively low to avoid spurious inertial effects.
机译:螺钉桩是有效的锚固,以维持大型隆起载荷,并且可以安装低噪音或振动。螺钉桩尺寸目前正在增加,更新研究兴趣,以降低安装要求(扭矩和人群或垂直力)。离散元素方法(DEM)是探讨螺钉桩安装期间复杂土壤行为的理想技术。已经使用不同的技术,例如颗粒上升或增加桩渗透率,从而将CPU时间降低到更可接受的持续时间(例如几天或几周)。本文调查了这些技术如何影响结果的准确性并改变安装机制。结果表明,保持低粒子缩放因子对于在低桩提升比(AR中,定义为螺旋间距除以螺旋间距的垂直位移的正确机构是必不可少的。桩型 - 堆积(Ar&lt 1)产生颗粒的向上运动,这反过来又产生了桩中的一些张力。较小的进步比要求较小的颗粒以精确捕获这种效果。结果还表明,必须保持桩渗透率相对较低,以避免杂散的惯性效应。

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