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Interaction analysis of back-to-back mechanically stabilized earth walls 被引量:1
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作者 Sadok Benmebarek Samir Attallaoui Nai'ma Benmebarek 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2016年第5期697-702,共6页
Back-to-back mechanically stabilized earth walls (BBMSEWs) are encountered in bridge approaches, ramp ways, rockfall protection systems, earth dams, levees and noise barriers. However, available design guidelines fo... Back-to-back mechanically stabilized earth walls (BBMSEWs) are encountered in bridge approaches, ramp ways, rockfall protection systems, earth dams, levees and noise barriers. However, available design guidelines for BBMSEWs are limited and not applicable to numerical modeling when back-to-back walls interact with each other. The objective of this paper is to investigate, using PLAXIS code, the effects of the reduction in the distance between BBMSEW, the reinforcement length, the quality of backfill material and the connection of reinforcements in the middle, when the back-to-back walls are close. The results indicate that each of the BBMSEWs behaves independently if the width of the embankment between mechanically stabilized earth walls is greater than that of the active zone. This is in good agreement with the result of FHWA design guideline. However, the results show that the FHWA design guideline underestimates the lateral earth pressure when back-to-back walls interact with each other. Moreover, for closer BBMSEWs, FHWA design guideline strongly overestimates the maximum tensile force in the reinforcement. The investigation of the quality of backfill material shows that the minor increase in embankment cohesion can lead to significant reductions in both the lateral earth pressure and the maximum tensile force in geosynthetic. When the distance between the two earth walls is close to zero, the connection of reinforcement between back-to-back walls significantly improves the factor of safety. 展开更多
关键词 Back-to-back walls Numerical analysis Geosynthetic Factor of safety Lateral earth pressure maximum tensile force Reinforcement
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加筋土桥台筋带最大拉力试验研究 被引量:2
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作者 金仁和 李明瑛 华祖琨 《中国铁道科学》 EI CAS CSCD 北大核心 2005年第5期36-40,共5页
通过室内大比例模型试验,研究自重作用下加筋土桥台的最大筋带拉力的变化规律。加筋土桥台最大筋带拉力作用线的上部是离面板约为墙高0.2倍左右距离的垂直顶面的直线,下部渐渐向面板靠拢,近似为一条以面板顶点为极点的对数螺旋线。最大... 通过室内大比例模型试验,研究自重作用下加筋土桥台的最大筋带拉力的变化规律。加筋土桥台最大筋带拉力作用线的上部是离面板约为墙高0.2倍左右距离的垂直顶面的直线,下部渐渐向面板靠拢,近似为一条以面板顶点为极点的对数螺旋线。最大筋带拉力上部(垂线段)较大,下部渐小。基于试验结果与现场实测结果,提出最大筋带拉力与对应最大筋带拉力作用线距面板的水平距离成正比的计算模型。与其他理论及实验结果的比较表明,该计算模型对最大筋带拉力的预测能有效地反映刚性面板影响,能更准确地预测实际的最大筋带拉力,其预测值与实测结果的误差只有14%,而其他理论预测值与实测结果的误差均大于50%。 展开更多
关键词 加筋土桥台 最大筋带拉力 最大筋带拉力作用线 计算模型
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桥梁结构裂缝计算方法的探讨
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作者 王昌武 《武汉城市建设学院学报》 1999年第3期41-44,共4页
结合工程设计对现行桥规[1]有关裂缝计算方法进行了评述,并提出了修正意见;
关键词 抗裂度 桥梁结构 裂缝 计算
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