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Mechanical Behaviors of Cylindrical Retaining Structures in Ultra-Deep Excavations

机译:圆柱保持结构在超深基坑中的力学行为

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Cylindrical shafts have been widely used in practice with prominent structural superiorities, primarily because of the spatial arching effects resulting from their circular retaining structures. The behaviors of cylindrical shafts were investigated via three-dimensional finite element analyses of two circular excavations for anchorage foundations in suspension bridge engineering. By comparing the FE-predicted results with the field measurements, the accuracy and reliability of the numerical models were verified. Additional calculations were also performed to study the influence factors of circular retaining structures. The following major findings were obtained: (1) The stresses in both the diaphragm walls and lining walls are relatively small, indicating that the arching effects of circular and double circular retaining structures are significant; (2) The main function of the lining walls is to enhance the rigidity of the diaphragm wall and to constrain its displacements, so the decrease in the lining wall thickness, the shape variation of the retaining structures and asymmetrical excavation make little difference to the structure stress. (3) The temperature change during circular or double circular excavation has a great influence on the stresses of the retaining structures.
机译:圆柱轴在实践中已被广泛使用,具有明显的结构优势,这主要是由于其圆形保持结构所产生的空间拱形效应。通过对悬索桥工程中锚固基础的两个圆形开挖进行三维有限元分析,研究了圆柱轴的性能。通过将有限元预测的结果与现场测量结果进行比较,验证了数值模型的准确性和可靠性。还进行了额外的计算来研究圆形保持结构的影响因素。得到以下主要发现:(1)隔板壁和衬砌壁的应力均较小,表明圆形和双圆形挡土结构的拱效应明显; (2)衬砌墙的主要功能是增强隔板墙的刚度并限制其位移,因此,减小衬砌墙的厚度,保持结构的形状变化和不对称开挖对结构的影响很小。压力。 (3)圆形或双圆形开挖过程中的温度变化对保持结构的应力有很大的影响。

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