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Ultimate Bearing Capacity of a Footing Considering the Interference of an Existing Footing on Sand

机译:考虑现有基础在沙子上的干扰的基础的极限承载力

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The ultimate bearing capacity of a new strip footing placed on a cohesionless soil medium, in the presence of an existing strip footing, the load on which is assumed to be known, has been determined. Both the footings are assumed to be perfectly rigid and rough. The analysis is carried out by using an upper bound finite element limit analysis. For different clear spacing (S) between the footings, the values of the efficiency factor (ξγ) were determined; where ξγ is defined as the ratio of the failure load for an interfering new footing of a given width (B) to that for a single isolated footing having the same width. For ϕ 30°, on the other hand if the applied load on the existing footing is approximately greater than half the failure load for a single isolated footing having the same width, the peak magnitude of ξγ was found to occur at around S/B ≈ 0.1 rather than at S/B = 0. The increase in ξγ becomes further significant with an increase in the magnitude of the load on the existing footing.
机译:已经确定了在存在现有条形基础的情况下,放置在无粘性土壤介质上的新条形基础的极限承载力,假设假定已知载荷。假定两个基础都完全刚性且粗糙。通过使用上限有限元分析来进行分析。对于底脚之间的不同净间距(S),确定效率因子(ξγ)的值;其中ξγ定义为给定宽度(B)的新基础受干扰的破坏载荷与具有相同宽度的单个孤立基础的破坏载荷之比。另一方面,对于ϕ 30°,如果在现有基础上施加的载荷大约大于相同宽度的单个孤立基础的破坏载荷的一半,则发现ξγ的峰值大小发生在S / B≈0.1左右,而不是在S / B = 0处。随着现有立足点上载荷的增加,ξγ的增加变得更加明显。

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