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Deterministic and reliability analysis of basal heave stability for excavation in spatial variable soils

机译:空间可变土壤中基坑起伏稳定性的确定性和可靠性分析

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Nonlinear finite element analyses for deep excavations in soft clay with different geometrical properties of the excavation, wall and soil properties were carried out to assess the basal heave factor of safety. The study indicated that the increase in the basal heave factor of safety with increasing wall penetration depth is more significant for diaphragm walls compared with sheetpile walls. The analyses also highlight that the depth to the hard stratum from the tip of the wall is a key component of the resistance of the excavation system to basal heave failure. A comparative study of the basal heave factor of safety predicted by the finite element analysis with some commonly used limit equilibrium methods was also carried out. Subsequently, reliability analyses that considered the spatial variability of the soft clay were performed and some useful conclusions regarding the effects of spatial averaging as well as the coefficient of variation of the soil properties are presented.
机译:对软土中具有不同几何特性的开挖,墙体和土壤特性的深基坑进行了非线性有限元分析,以评估基础起伏系数。研究表明,与片状墙相比,隔膜墙的基础安全升沉系数随墙穿透深度的增加而更为显着。分析还强调,从墙顶到坚硬地层的深度是挖掘系统抵抗基础起伏破坏的关键因素。还通过有限元分析和一些常用的极限平衡方法对基础起伏系数进行了比较研究。随后,进行了考虑软黏土空间变异性的可靠性分析,并提出了一些有关空间平均效应以及土壤性质变异系数的有用结论。

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