首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Application of Submodeling Technique in Numerical Modeling of Mechanized Tunnel Excavation
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Application of Submodeling Technique in Numerical Modeling of Mechanized Tunnel Excavation

机译:子建模技术在机械化隧道开挖数值模拟中的应用

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摘要

This research proposes a novel methodology of applying submodeling technique in the numerical simulation of mechanized tunnel excavation. A submodel is a smaller scale cut out of the full scale model (global model) in which the more in detail simulations along with higher degree of precision are conducted. Apparently, the submodel should include the near field around the TBM that is significantly affected by tunneling process and the region of interest such as ground surface where the model responses have to be surveyed. The appropriate size of the submodel is found by evaluation of the strain energy distribution in the domain while the energy gradient has to fulfill the predefined criterion. To analyze the submodel, the nodal displacements are derived from the global model and applied to the boundaries of the submodel. Using the proposed submodeling technique in the tunneling, the computational costs are reduced, while the submodel provides realistic prediction of the deformations in the system and lining forces. Finally, the proposed submodeling method is applied in both 2D and 3D tunneling simulations while two types of submodeling strategy (fixed submodel and moving submodel) are adopted for the 3D simulations. The results indicate that both approaches are adequate for predicting the lining forces and ground movements.
机译:这项研究提出了一种在机械化隧道开挖数值模拟中应用子建模技术的新方法。子模型是从完整模型(全局模型)中切出的较小模型,其中进行了更详细的模拟以及更高的精度。显然,该子模型应包括受隧道过程显着影响的TBM周围的近场和必须调查模型响应的感兴趣区域(如地面)。通过评估域中的应变能分布,可以确定子模型的适当大小,同时能量梯度必须满足预定义的标准。为了分析子模型,从整体模型导出节点位移并将其应用于子模型的边界。在隧道中使用建议的子模型技术,可减少计算成本,而子模型可提供系统变形和衬砌力的真实预测。最后,将所提出的子建模方法应用于2D和3D隧道仿真中,而3D仿真则采用两种类型的子建模策略(固定子模型和移动子模型)。结果表明,两种方法都足以预测衬砌力和地面运动。

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