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Three-dimensional orthotropic equivalent modelling method of large-scale circular jointed lining

机译:大型圆形节理衬砌三维正交各向异性等效建模方法

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摘要

Due to the large spatial scale differences between the structure details and the global tunnel, the large-scale shield tunnels were usually modeled as continuous 'pipes' in the 3-D numerical analyses. The details (e.g. joints) that greatly affect the integral stiffness of the continuous 3-D tunnel models have seldom been discussed in literatures. This paper presents an idea of orthotropic equivalence for the modeling of the large-scale circular shield tunnel and the optimization procedure for the identification of the nominal material constants. Considering the tunnel's structural characteristic in its radial, circumferential and axial directions and its periodicity, the segmentally erected lining is equivalently modeled as an orthotropic continuous structure. An optimization procedure based on the idea of inverse analysis and FE method which can quickly identify the equivalent constants is also proposed. Validation example shows that a reasonable consistency between results predicted by the equivalent/segmental models and the analytical formulas is achieved.
机译:由于结构细节和整体隧道之间存在较大的空间比例差异,因此通常在3-D数值分析中将大型屏蔽隧道建模为连续的“管道”。在文献中很少讨论会极大影响连续3-D隧道模型整体刚度的细节(例如,接头)。本文提出了用于大型圆形盾构隧道建模的正交异性等效思想和用于识别名义材料常数的优化程序。考虑到隧道在径向,周向和轴向的结构特征及其周期性,将分段竖立的衬砌等效地建模为正交异性连续结构。提出了一种基于反分析思想和有限元方法的快速识别等效常数的优化程序。验证实例表明,等效/分段模型预测的结果与解析公式之间具有合理的一致性。

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