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Closely spaced rectangular footings on sand over soft clay with geogrid at the interface

机译:在软粘土上的沙子上紧密间隔开的矩形基础,界面处有土工格栅

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摘要

In this study, laboratory-scale experiments are carried out to investigate the interference effect on bearing capacity and settlement behaviour of two closely spaced identical footings placed on the surface of a sand layer of limited thickness underlain by a soft clay layer with geogrid at the interface. Three pairs of model footings of different sizes are used in the study. The width (B) and length (L) of the footings are chosen in such away that the L/B ratio (aspect ratio) of the footings is varied as 1.0 (square), 1.5 (rectangular) and 2.0 (rectangular). It has been observed that there is an optimum spacing where the bearing capacity of the interfering footing reaches the maximum value. The optimum spacing is found to be 2.0 times the width of the footing for all shapes of footings at H/B=0.75, where H is the thickness of sand over soft clay. The maximum interference factor for bearing capacity (for a square footing) in homogeneous reinforced sand is 18% more than the sand-clay layered soil. The influence of footing interference increases with an increase in L/B ratio. The strain distribution along the reinforcement is also investigated and it is found that the strains in the reinforcement vary with the spacing ratio.
机译:在这项研究中,进行了实验室规模的实验,以研究在有限厚度的沙层表面上由界面处有土工格栅的软粘土层对两个紧密间隔的相同基脚的承载力和沉降行为的干扰影响。 。研究中使用了三对不同大小的模型基础。选择底脚的宽度(B)和长度(L),以使底脚的L / B比(纵横比)变化为1.0(正方形),1.5(矩形)和2.0(矩形)。已经观察到,存在最佳间隔,在该间隔中,干扰基础的承载力达到最大值。对于H / B = 0.75的所有形状的基脚,最佳间距被发现是基脚宽度的2.0倍,其中H是软粘土上的沙子厚度。在均质增强砂土中,对于承载力(平方英尺)的最大干扰系数比砂土层状土高18%。底脚干扰的影响随着L / B比的增加而增加。还研究了沿钢筋的应变分布,发现钢筋中的应变随间距比而变化。

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