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A simplified approach for evaluating the bearing performance of encased granular columns

机译:评估封闭式颗粒柱承载性能的简化方法

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Tensile resistant materials used to encase cylindrical granular columns significantly improve column strength. For an encased granular column subjected to axial load, the axial deformation and volumetric expansion causes lateral expansion, which induces circumferential strain and stress in the encasement and provides additional confining pressure to the column. To make good predictions of column behavior through numerical analysis, elaborate deductive and regressive work is needed to describe the mechanical properties of the filled material. This study analyzes the bearing performance of geosynthetic-encased sand columns using a simplified approach to reduce such laborious deductive efforts. A few equations and calculation steps are also proposed to evaluate the confining pressure increments and deviatoric stress due to encasement extension. The proposed approach employs an empirical correlation between the dilation rate and deviatoric strain of pure sand to evaluate the volumetric strain of deformed encased granular columns. The approach has also been extended to evaluate the use of the constant volume assumption in predicting the responses of encased granular columns. The relationships between the confining pressure increment and encasement stiffness/column diameter ratio are established through simplified assumptions. Results obtained from the proposed approach are validated and found to be in good agreement with the experimental measurements and numerically analysis results under rigorous parameter acquisition. The proposed approach provides accurate results without laborious analytical efforts.
机译:用于包裹圆柱形颗粒柱的抗拉材料显着提高了柱强度。对于承受轴向载荷的封闭颗粒柱,轴向变形和体积膨胀会引起侧向膨胀,从而在密封壳中引起周向应变和应力,并向柱提供额外的约束压力。为了通过数值分析对柱的行为做出良好的预测,需要详尽的演绎和回归工作来描述填充材料的力学性能。本研究使用简化的方法来分析土工合成材料包裹的砂柱的承载性能,以减少此类费力的演绎工作。还提出了一些方程式和计算步骤来评估由于围护扩展引起的围压增量和偏应力。提出的方法利用膨胀率和纯砂的偏应变之间的经验相关性来评估变形的包裹颗粒柱的体积应变。该方法也已扩展到评估恒定体积假设在预测装入颗粒柱的响应中的使用。通过简化的假设来建立围压增量与围护刚度/柱直径比之间的关系。验证了从所提出的方法获得的结果,并发现与严格测量参数下的实验测量结果和数值分析结果非常吻合。所提出的方法无需费力的分析工作即可提供准确的结果。

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