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Evaluation of required connection load in GRS-IBS structures under service loads

机译:服务负荷下GRS-IBS结构所需连接负荷的评估

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摘要

This study presents an evaluation of the connection load (T-o) and stress-strain conditions right behind the facing of a Geosynthetic Reinforced Soil - Integrated Bridge Structure (GRS-IBS) based on field instrumentation data obtained from an abutment constructed in Virginia. The observations from this site are compared against other projects in Delaware and Louisiana. The lateral stress distribution obtained from the field was observed to be lower than the active lateral earth pressure distribution but higher than predicted using the bin pressure method. The results from all sites showed that the reinforcement strains measured in the field were below the maximum geosynthetic strains allowed in the design of GRS-IBS. The distributions of both lateral stresses and reinforcement strains with depth were found to be approximately uniform. The T-o values for the Virginia structure were obtained based both on reinforcement strain and lateral stress data, which agreed well with each other. All sites indicated the existence of lateral stresses behind the facing, which contributed to the development of T-o. The normalized T-o values for all GRS-IBS projects evaluated in this study showed that the theoretical tributary area approach outlined in MSE design can be conservatively adopted to predict T-o in the design of GRS-IBS.
机译:本研究提出了基于从弗吉尼亚州建造的基台获得的现场仪器数据的面对地质合成的土壤集成桥结构(GRS-IBS)的面向地球合式化的土壤集成桥梁结构(GRS-IBS)的连接负荷(T-O)和应力 - 应变条件的评估。将本网站的观察与特拉华州和路易斯安那州的其他项目进行比较。观察到从该场获得的横向应力分布低于主动横向接地压力分布,但是使用箱压力方法的预测。所有网站的结果表明,在该领域中测量的增强菌株低于GRS-IBS设计中允许的最大地质合成菌株。发现横向应力和增强菌株的分布均近似均匀。基于增强菌株和横向应力数据,获得弗吉尼亚结构的T-O值,彼此一致。所有网站都表明了面向后面的横向应力的存在,这导致了T-O的发展。本研究评估的所有GRS-IBS项目的标准化T-O值表明,MSE设计中概述的理论支流区域方法可以保守地采用来预测GRS-IBS设计中的T-O.

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