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首页> 外文期刊>International Journal of Geosynthetics and Ground Engineering >Experimental Model Studies on Strip Footings Resting on Geocell-Reinforced Sand Slopes
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Experimental Model Studies on Strip Footings Resting on Geocell-Reinforced Sand Slopes

机译:地质素增强沙坡休息搁置带材的实验模型研究

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摘要

In this study, the influence of the three significant contributing factors affecting the behavior of the footings resting on the unreinforced and geocell-reinforced sand slopes are investigated using a series of small-scale model tests. These factors consist of the back length of the geocell layer, the footing setback and the slope inclination angle. Results indicate that the geocell inclusion, even with no back length, significantly improves the behavior of the foundations overlying the slopes. In addition, the optimum geocell back length ratio was found to be 0 and 2 at settlement ratios of lower than 20% and higher than 20% respectively. Moreover, the increase in the footing setback led to considerable growth in the bearing capacity of both unreinforced and reinforced model slopes. However, the most efficient footing setback ratio was found to be 1, in particular at mean and large settlement ratio values. Furthermore, the results suggest that both unreinforced and reinforced models gain bearing capacity as the slope angle declines. However, among the different slope angles considered in this study (0 degrees, 25 degrees, 30 degrees, 35 degrees), the most efficient geocell-reinforced slope was found to be the one with an inclination angle of 30 degrees.
机译:在这项研究中,使用一系列小规模模型测试,研究了影响搁置在未原始的和地理域加强砂坡上的基况行为的三种显着贡献因素的影响。这些因素包括地理蜂窝层的后长度,脚踏板和斜率倾斜角度。结果表明,即使没有背长,即使没有背长,也显着提高了覆盖斜坡的基础的行为。此外,发现最佳的Geocell背长比分别在低于20%和高于20%的沉降比下为0和2。此外,脚踏挫折的增加导致了不合因和增强模型斜坡的承载力的相当大的增长。然而,发现最有效的基础挫折比为1,特别是在平均值和大的沉降比值中。此外,结果表明,随着斜坡角下降,未原始和增强模型的增益能力增加。然而,在本研究中考虑的不同倾角(0度,25度,30度,35度)中,发现最有效的地质蜂窝增强斜面是具有30度的倾斜角的斜面。

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