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MODELING OF THE COMPACTION-INDUCED STRESSES IN NUMERICAL ANALYSES OF GRS WALLS

机译:GRS墙数值分析中的压实应力模拟

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This article presents a numerical approach for modeling of the compaction-induced stresses on the analyses of geosynthetic reinforced soil (GRS) walls. The modeling of the backfill compaction stresses was described and analyses were performed using this suggested procedure. Two distribution loads at the top and bottom of each soil layer were used to simulate the vertical induced stress due to backfill soil compaction. The suggested procedure was validated with the results of a wrapped-faced full-scale reinforced soil wall performed at the Geotechnical Laboratory of COPPE/UFRJ. The results of the simulation using this procedure were compared with another procedure reported in the literature. Parametric studies were carried out to verify the effect of compaction induced stress and surcharge loads on the behavior of GRS walls. Results show that the compaction procedure suggested in the present paper was able to properly represent the measured values of the summation of the maximum tension in the reinforcement and lateral movements. It was verified that the compaction procedure used in the literature overestimated the measured values, and this discrepancy increases with depth and also with compaction effort.
机译:本文提出了一种数值方法,用于对土工合成加筋土(GRS)墙的分析中的压实引起的应力进行建模。描述了回填压实应力的模型,并使用此建议的程序进行了分析。每个土层顶部和底部的两个分布载荷用于模拟由于回填土压实而产生的垂直感应应力。建议的程序已在COPPE / UFRJ的岩土工程实验室进行的包裹面全尺寸加筋土墙的结果得到验证。使用该过程的仿真结果与文献中报道的另一种过程进行了比较。进行了参数研究,以验证压实诱导的应力和附加载荷对GRS墙的性能的影响。结果表明,本文提出的压实程序能够正确地表示钢筋和横向运动中最大拉力之和的测量值。事实证明,文献中使用的压实程序高估了测量值,并且这种差异随着深度和压实力的增加而增加。

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