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Centrifuge study of reinforced soil walls with different backfill compaction densities

机译:不同回填压实密度的钢筋土墙的离心研究

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Backfill relative density can have a significant influence on the performance and stability of reinforced soil retaining walls, as reflected in the form of minimum compaction requirements in current design guidelines. However, the quantitative influence of backfill relative density on the construction and serviceability performance of reinforced soil walls has not been examined adequately. In this study, centrifuge tests were carried out on two model walls with different backfill relative densities, and their measured performances were compared against those calculated using available empirical methods. Results of the study show that maximum displacement of the model with inadequate compaction (i.e. D-r = 65%) was 30% greater than that of the D-r = 95% model and exceeded the value predicted by one of the design methods examined. The foundation pressure underneath the wall showed increased magnitudes under the facing and a nonlinear decrease with distance from the facing along the backfill. Additionally, the model with D-r = 95% developed larger reinforcement loads and mobilized soil-reinforcement interface coefficient values relative to the model with D-r = 65%.
机译:回填相对密度可以对增强土壤挡土墙的性能和稳定性产生显着影响,如当前设计指南中的最小压实要求的形式反映。然而,回填相对密度对增强土坯壁构建和可折射率性能的定量影响尚未得到充分检查。在本研究中,在具有不同回填相对密度的两个模型壁上进行离心测试,并将其测量的性能与使用可用的经验方法计算的那些进行比较。该研究的结果表明,压实不足(即D-R = 65%)的模型的最大位移比D-R = 95%模型的模型大30%,超过了所检查方法之一预测的值。壁下面的基础压力显示在面对面下的增加,并且在沿着回填的距离的距离下的非线性减小。另外,具有D-R = 95%的模型,相对于D-R = 65%的模型,较大的加强载荷和动员的土壤增强界面系数值。

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