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INFLUENCE OF INTERFERENCE ON FAILURE MECHANISM OF CLOSELY CONSTRUCTED CIRCULAR FOOTINGS ON REINFORCED SAND

机译:干扰对钢筋混凝土密实圆弧形壁破坏机理的影响

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The influence of reinforcement on the failure mechanism and displacement fields of soil of spread and interfering circular footing on cohessionless granular soil has been studied in this paper. The analyses pursued using finite difference method based on commercially available code, FLAC3D (Fast Lagrangian Analysis of continua). The behavior of soil is assumed to be based on Mohr-coulomb criterion with non-associated flow rule by assuming 0≤ψ≤φ. To ensure the reliability of numerical method to predict accurately results, numerical results of spread circular footing were compared with the available data from other experimental research. This comparison shows satisfactory agreement. Parametric studies were performed subsequently. The results indicate that the footing interference causes some directional difference in the soil displacement field and failure mechanism of closely spaced footings subjected to vertical loads without eccentricity with respect to spacing between two neighboring footings. In addition, the results show that there exists a significant improvement in the behavior of interfering footings reinforced with reinforcement layers.
机译:研究了加筋对无粘性粒状土的破坏机理和扩展圆形地基土的破坏场以及圆形地基的影响。使用基于市售代码FLAC3D(连续性的快速拉格朗日分析)的有限差分法进行的分析。假设土壤的行为是基于Mohr-库仑准则,并具有非关联流规则,则假设0≤ψ≤φ。为确保数值方法准确预测结果的可靠性,将展开圆形立脚的数值结果与其他实验研究的可用数据进行了比较。该比较表明令人满意的一致性。随后进行了参数研究。结果表明,立足点的干扰会引起土壤位移场的方向性差异,并导致竖向紧密分布的立足点的破坏机理相对于两个相邻立足点之间的间距没有偏心。另外,结果表明,用增强层增强的干扰基础行为有显着改善。

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