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Eccentrical behavior of square and circular footings resting on geogrid-reinforced sand

机译:土工格栅加筋的方形和圆形底座的偏心行为

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摘要

A simple approach to describe the centrically and eccentrically ultimate bearing capacity of circular and square footings resting on geogrid-reinforced sand is developed in this paper. To establish and evaluate this approach, a series experimental test for circular footing and square footing were considered as shallow foundation models. The proposed approach for eccentrical loading in unreinforced and reinforced conditions has been validated with Meyerhof's Effective Width Concept, laboratory model tests, numerical analyses data and field tests on actual full scale reported in the literature review. It was revealed that the new method provides reasonable agreement of the ultimate bearing capacity. Also, the results show ultimate bearing capacity of circular footing decreases less with increment of load eccentricity in comparison of square footing in reinforced condition. Improvement Index investigated that reinforcement layers increased the ultimate bearing capacity in both loadings and their contributions increased with increasing the load eccentricity.
机译:本文提出了一种简单的方法来描述在土工格栅加筋的沙子上放置的圆形和方形支脚的偏心和偏心极限承载力。为了建立和评估这种方法,圆形基础和方形基础的一系列实验测试被视为浅层基础模型。在文献综述中,Meyerhof的有效宽度概念,实验室模型测试,数值分析数据和现场实际测试已验证了所提出的在无钢筋和钢筋条件下偏心荷载的方法。结果表明,新方法在极限承载力方面具有合理的一致性。此外,结果表明,与加固状态下的方形基础相比,圆形基础的最终承载力随着载荷偏心率的增加而减小的程度较小。改进指数调查表明,增强层在两种载荷下均增加了极限承载力,并且其作用随着载荷偏心率的增加而增加。

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