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Evaluation of vertical stress distribution in field monitored GRS-IBS structure

机译:局部监测GRS-IBS结构垂直应力分布的评估

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This paper presents a case study of a geosynthetic-reinforced soil (GRS) integrated bridge system (IBS) in which the vertical stresses during and after construction were monitored via instrumentation. The purpose of the study was to evaluate the effects of reinforcement spacing, width of the beam seat, and seasonal variations on the vertical stresses measured in the field. The stress distribution observed in the field was also compared to the theoretically estimated stress distribution. The results showed that the bearing bed where the reinforcements are doubled is effective in reducing the applied stresses by about 1.8 to 5.4 times. The width of the beam seat controlled the magnitude of the applied stresses on the GRS abutment and the applied stress was vertically transferred all the way to the foundation level even in wider beam seats. A comparison between field recorded and theoretical stress values showed that the Boussinesq method provides a better estimate of the field vertical stress distribution than the approximate 2 : 1 method, although the 2 : 1 method provides more conservative stresses to be considered for design. Results from long-term monitoring indicated that vertical stress distribution in the GRS abutments was not significantly influenced by seasonal variations.
机译:本文提出了一种案例研究了一种土工合成加强土(GRS)集成桥系统(IBS),其中通过仪器监测了施工期间和之后的垂直应力。该研究的目的是评估加强间隔,梁座的宽度和季节性变化对现场测量的垂直应力的影响。还与理论估计的应力分布相比,在该领域观察到的应力分布。结果表明,增强剂加倍的轴承床有效地将施加的应力降低约1.8至5.4倍。梁座的宽度控制施加的施加应力和施加的应力均匀地转移到基础水平,即使在更宽的梁座中也是如此。场记录和理论应力值之间的比较表明,BoussinesQ方法提供比大约2:1方法的场垂直应力分布更好地估计,尽管2:1方法提供了更保守的应力进行设计。长期监测的结果表明,GRS支座中的垂直应力分布不会受到季节变异的显着影响。

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