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Assessing the ultimate uplift capacity of plate anchors in geocell-reinforced sand

机译:评估土工格室加筋砂中板锚的极限提升能力

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摘要

Use of geosynthetic reinforcement may improve the performance of many geotechnical systems, including anchors. In this study, the uplift capacity of geocell-reinforced sand is studied based on a series of near large-scale experiments and calibrated three-dimensional Finite Element (FE) models. Using the verified FE models, a comprehensive parametric study of over 270 models was performed to assess the influence of friction angle, geocell stiffness, embedment depth, anchor size, and geocell-anchor width ratios on uplift capacity. Uplift capacity increases with embedment depth and friction angle, but the relative increase is more pronounced for loose sand. The observed shape effects are amplified in reinforced installation. The increase in uplift capacity observed decays for geocell-anchor width ratios greater than 3, but an increase in geocell stiffness demonstrates increased uplift capacity through the increased mobilization of geocell resisting uplift. Finally, based on the verified numerical models, a semi-empirical equation is proposed to enable estimation of uplift capacity in geocell-reinforced sand, demonstrating good agreement with results from numerical simulations.
机译:土工增强材料的使用可以改善包括锚点在内的许多岩土系统的性能。在这项研究中,基于一系列近乎大规模的实验和经过校准的三维有限元(FE)模型,对土工格室加筋砂的抗拔能力进行了研究。使用经过验证的有限元模型,对270多个模型进行了全面的参数研究,以评估摩擦角,土工格室刚度,嵌入深度,锚固尺寸和土工格室锚固宽度比对提升能力的影响。提升能力随埋深和摩擦角的增加而增加,但相对的增加对于松散的沙子更为明显。在加固安装中,观察到的形状效果会更大。对于大于3的土工格室-锚宽度比率,观察到的提升能力的增加会衰减,但是,土工格室刚度的增加表明,通过增加动员的土工格室抵抗隆起的能力,提升了提升能力。最后,在验证的数值模型的基础上,提出了一个半经验方程,可以估算土工格室加筋砂的抗拔能力,与数值模拟结果吻合良好。

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