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Bearing capacity of foundations on soft clays with granular column and trench

机译:带粒状圆柱和沟槽的软粘土上的地基承载力

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The bearing capacity of foundations on soft clays under undrained conditions has been computed with inclusion of (i) a single vertical granular trench below a strip footing and (ii) a granular column placed below a circular footing. A lower bound plane strain and axisym-metric limit analysis, in conjunction with finite elements and an optimization procedure, has been used. The efficiency factor (xi) has been determined by varying B-t/B-f; where (i) B-t = diameter of the column (width of the trench) and (ii) B-f = diameter of the circular footing (width of the strip footing). The effect of (i) the depth (D) of the column (trench) and (ii) the angle of internal friction (phi) of the column (trench) material has been explored for a wide range of c(u)/(gamma B-f); c(u) and gamma imply undrained cohesion and the unit weight of the clay mass, respectively. Factor xi increased quite significantly with increases in B-t/B-f and D/B-f. Factor xi improved further with (i) increases in phi and (ii) decreases in c(u)/(gamma B-f). (C) 2017 Production and hosting by Elsevier B.V.
机译:在不排水条件下,软土上的地基承载力已通过以下方法计算得出:(i)条形基础下方的单个垂直颗粒沟槽和(ii)圆形基础下方的颗粒状圆柱。下界平面应变和轴对称极限分析,结合有限元和优化程序,已被使用。效率因子(xi)通过改变B-t / B-f来确定;其中(i)B-t =圆柱直径(沟槽的宽度),以及(ii)B-f =圆形底座的直径(带状底座的宽度)。对于(c)(u)/(c)的较宽范围,已经探究了(i)圆柱(沟槽)的深度(D)和(ii)圆柱(沟槽)材料的内摩擦角(phi)的影响。伽马Bf); c(u)和γ分别表示不排水的内聚力和粘土质量的单位重量。 xi因子随着B-t / B-f和D / B-f的增加而显着增加。因子xi随着(i)phi的增加和(ii)c(u)/(γB-f)的降低而进一步改善。 (C)2017年Elsevier B.V.的制作和托管

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