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首页> 外文期刊>International journal of geotechnical engineering >Required minimum reinforcement stiffness and strength in geosynthetic-reinforced soil (GRS) walls and abutments
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Required minimum reinforcement stiffness and strength in geosynthetic-reinforced soil (GRS) walls and abutments

机译:土工合成材料加筋墙和基台中要求的最小加筋刚度和强度

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摘要

In current design methods for geosynthetic-reinforced soil (GRS) walls and abutments, there is a fundamental design assumption that the reinforcement strength and spacing play an equal role in the performance of a GRS wall/abutment, i.e., larger reinforcement spacing can be fully compensated by using proportionally stronger reinforcement and lead to the same performance. This has encouraged designers to use larger reinforcement spacing in conjunction with stronger reinforcement for reduction in construction time. Recent studies, however, has indicated that reinforcement spacing plays a much more significant role in the performance of a GRS wall/abutment than reinforcement strength. In this paper, an analytical model that is capable of reflecting more accurately the roles of reinforcement spacing and reinforcement strength is presented. Using available data from large-scale experiments, it is shown that the analytical model provides a much improved tool for predicting reinforcement forces at failure than the current design equation. Based on the analytical model, a protocol for determination of required minimum reinforcement stiffness and strength in design is presented.
机译:在当前的土工合成材料加筋(GRS)墙和基台的设计方法中,存在一个基本的设计假设,即加筋强度和间距在GRS墙/基台的性能中起着同等作用,即较大的加筋间距可以完全通过使用成比例的更强的钢筋进行补偿,并获得相同的性能。这鼓励设计人员使用更大的钢筋间距和更强的钢筋,以减少施工时间。但是,最近的研究表明,钢筋间距在GRS墙/基台的性能中起着比钢筋强度更重要的作用。本文提出了一种能够更准确地反映钢筋间距和钢筋强度作用的分析模型。使用来自大规模实验的可用数据,表明与目前的设计方程相比,该分析模型为预测失效时的增强力提供了大大改进的工具。基于分析模型,提出了确定设计中所需的最小增强刚度和强度的协议。

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