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Lower-bound calculations of the bearing capacity of eccentrically loaded footings in cohesionless soil

机译:无粘性土中偏心荷载基础承载力的下界计算

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摘要

Lower-bound calculations based on the finite element method are used to determine the bearing capacity of a strip foundation subjected to a vertical, eccentric load on cohesionless soil with varying surcharges. The soil is assumed perfectly plastic following the Mohr-Coulomb failure criterion. The results are reported as tables and graphs showing the bearing capacity as a function of the eccentricity and surcharge. Normalised interaction diagrams in the vertical force versus moment plane have been produced. The results from the analysis are in reasonable agreement with existing methods for smaller eccentricities, whereas for greater eccentricities (e > 0.25B-0.3B, where B is the width of the foundation), the lower-bound values in general - and especially for greater surcharges - are considerably smaller than the bearing capacities predicted by existing methods. For the special case of no surcharge, the results are in very good agreement with results obtained by the effective-width approach originally proposed by Meyerhof.
机译:基于有限元方法的下界计算用于确定带状基础在垂直,偏心荷载下在附加荷载变化的无粘性土壤上的承载力。假定土壤遵循Mohr-Coulomb破坏准则是完全可塑性的。结果以表格和图表的形式显示,显示了承载能力随偏心率和附加力的变化。产生了垂直力与力矩平面的归一化相互作用图。分析的结果与较小偏心率的现有方法合理地吻合,而对于较大偏心率(e> 0.25B-0.3B,其中B为基础宽度),通常较低的值-特别是对于更高的附加费-远远小于现有方法所预测的承载能力。对于没有附加费的特殊情况,结果与最初由Meyerhof提出的有效宽度方法获得的结果非常吻合。

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