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Basal heave stability of supported circular excavations in clay

机译:黏土中圆形支撑基坑的底沉稳定性

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Deep circular shafts are commonly used for example to construct access shafts for transit tunnels, pump stations for wastewater tunnels, and launch shafts for tunnel boring machines. Since the earth pressures acting on a circular shaft subjects the shaft support to ring compression, the reinforcement in the structural elements can be reduced and the need for internal support is eliminated, thereby speeding up excavation. The design of circular support systems for excavations in clays involves assessing the ground stresses and ground movements, the capacity of the structural elements, and the basal heave stability. This study focused on assessing the basal heave stability of diaphragm wall supported circular excavations in clays using the finite element method. The analyses have shown that the basal heave factor of safety is dependent on the undrained shear strength of the clay, the geometrical properties of the excavation system and the thickness of the soil stratum. Based on these results, a simplified method is proposed for assessing the basal heave factor of safety for axisymmetric supported excavations in clay. (C) 2016 Elsevier Ltd. All rights reserved.
机译:深圆形轴通常用于例如构造运输隧道的入口轴,废水隧道的泵站以及隧道掘进机的发射轴。由于作用在圆形轴上的土压力使轴支撑受到环压缩,因此可以减少结构元件中的加强,并且消除了对内部支撑的需要,从而加快了挖掘速度。用于黏土开挖的圆形支撑系统的设计涉及评估地面应力和地面运动,结构元件的能力以及基础起伏稳定性。这项研究的重点是使用有限元方法评估地下连续墙在粘土中的墙面基础稳定性。分析表明,基础起伏安全系数取决于粘土的不排水抗剪强度,开挖系统的几何特性以及土壤地层的厚度。基于这些结果,提出了一种简化的方法来评估黏土中轴对称支护基坑的基础起伏系数。 (C)2016 Elsevier Ltd.保留所有权利。

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