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Soil-reinforcement interaction: Stress regime evolution in geosynthetic-reinforced soils

机译:土壤增强互动:地球合成钢化土的应力政权演变

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Understanding the stress regime that develops in the vicinity of reinforcements in reinforced soil masses may prove crucial to understanding, quantifying, and modeling the behavior of a reinforced soil structures. This paper presents analyses conducted to describe the evolution of stress and strain fields in a reinforced soil unit cell, which occur as shear stresses are induced at the soil-reinforcement interface. The analyses were carried out based on thorough measurements obtained when conducting soil-reinforcement interaction tests using a new largescale device developed to specifically assess geosynthetic-reinforced soil behavior considering varying reinforcement vertical spacings. These experiments involved testing a geosynthetic-reinforced mass with three reinforcement layers: an actively tensioned layer and two passively tensioned neighboring layers. Shear stresses from the actively tensioned reinforcement were conveyed to the passively tensioned reinforcement layers through the intermediate soil medium. The experimental measurements considered in the analyses presented herein include tensile strains developed in the reinforcement layers and the displacement field of soil particles adjacent to the reinforcement layers. The analyses provided insights into the lateral confining effect of geosynthetic reinforcements on reinforced soils. It was concluded that the change in the lateral earth pressure increases with increasing reinforcement tensile strain and reinforcement vertical spacing, and it decreases with increasing vertical stress.
机译:了解加强土壤群体中增援附近的压力制度可能证明对理解,量化和建模钢筋土壤结构的行为至关重要。本文介绍了在土壤 - 加强界面诱导剪切应力时,以描述钢筋土壤单元电池中应力和应变场的演变的分析。基于使用开发的新的大型大型设备进行土壤增强件相互作用试验,基于彻底测量来进行分析,以特别是考虑不同的加强垂直间距,以特殊地评估土工合成加强的土壤行为。这些实验涉及用三个加强层测试地质合成增强的质量:主动张紧层和两个被动张紧的相邻层。通过中间土培养基将来自主动张紧的增强件的剪切应力输送到被动张紧的增强层。本文提出的分析中考虑的实验测量包括在加强层中产生的拉伸菌株和与加强层相邻的土壤颗粒的位移场。分析提供了对土工合成增援对增强土壤的横向限制效果的见解。结论是,横向接地压力的变化随着增强拉伸应变和增强垂直间隔的增加而增加,随着垂直应力的增加而降低。

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