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UNDRAINED END BEARING CAPACITY OF AN IMPROVED SOIL BERM IN AN EXCAVATION

机译:开挖中改良后的土壤边坡的不排水端承能力

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References(28) For a wide excavation in soft soil, the excavation can be stabilized by an embedded improved soil berm to increase wall stability and control soil movement. An embedded stiff berm essentially behaves like a horizontal pile subjected to a load applied by the retaining wall and derives its resistance to horizontal movement from both end bearing and interfacial shear resistance on the top and bottom of the berm. This resistance helps to restrain the wall from moving inwards to the excavated side. However, to date, there is no known reported literature on the determination of the undrained ultimate bearing capacity of such a berm, especially for the unit end bearing, qb. In this paper, the undrained end bearing of an improved berm under a plane strain condition was determined. The undrained end bearing capacity was first derived using a solution from a proposed upper bound analysis based on observations from centrifuge tests and then modified, taking on the basis of an equivalent finite element analyses. The proposed end bearing capacity factor Nc lies between the upper bound and lower bound solutions. The solution showed that the undrained end bearing capacity is not a constant but decreases during the excavation process. Furthermore, it was shown that the existence of an improved soil berm will provide an additional pressure relative to the passive pressure to control the wall displacement.
机译:参考文献(28)对于在软土中的广泛开挖,可以通过嵌入的改良土壤护堤来稳定开挖,以增加墙体稳定性并控制土壤运动。嵌入的刚性护堤在本质上就像水平桩一样,受到挡土墙施加的载荷,并从端部轴承和护堤顶部和底部的界面剪切阻力中得出其对水平运动的抵抗力。这种阻力有助于抑制墙体向内移动到挖掘侧。但是,迄今为止,尚无关于确定这种护堤的不排水极限承载力的文献报道,特别是对于单元端轴承qb的确定。在本文中,确定了在平面应变条件下改进的护堤的不排水端轴承。不排水的端部承载力首先使用拟议的上限分析的解决方案得出,该解决方案基于离心试验的观察结果,然后在等效的有限元分析基础上进行修改。提议的最终承载力因子Nc位于上限和下限解之间。该解决方案表明,在开挖过程中,不排水的端部承载力不是恒定的而是下降的。此外,已经表明,存在改良的土壤护堤,将提供相对于被动压力的附加压力,以控制壁的位移。

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