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Finite element parametric study of the performance of a deep excavation

机译:深基坑性能的有限元参数研究

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Deep excavations are widely used for the development of underground space. The structural performance of any deep excavation is influenced by details of the soil behaviour, the form of the retaining and support structures that are employed and also the sequence of construction. Finite element analysis is potentially an effective tool for considering both the geotechnical and structural aspects of the design of deep excavations. To capture the main features of the excavation behaviour, a finite element model is required that is able to represent the principal deformation and structural mechanisms at an appropriate level of detail. The current paper explores the various modelling assumptions that need to be considered when developing detailed 3D finite element models for the design of deep excavations. A parametric study is described, based on an idealised square excavation, to investigate the influence that certain key features of the model can have on the quality of the computed results. The study includes the choice of element type to model the structural components, the selection of appropriate material parameters, the choice of procedures to model post-cure shrinkage of the concrete elements and the choice of procedure to model the soil/structure interfaces. The results of this parametric study provide guidance for the development of finite element models for practical design purposes. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:深基坑被广泛用于地下空间的开发。任何深基坑的结构性能都会受到土壤特性,所采用的保持和支撑结构形式以及施工顺序等细节的影响。有限元分析可能是考虑深基坑设计的岩土和结构方面的有效工具。为了捕捉开挖行为的主要特征,需要一个有限元模型,该模型能够以适当的详细程度表示主要的变形和结构机理。本文探讨了开发深基坑设计的详细3D有限元模型时需要考虑的各种建模假设。描述了基于理想化正方形开挖的参数研究,以研究模型的某些关键特征可能对计算结果的质量产生的影响。这项研究包括选择对结构构件建模的单元类型,选择合适的材料参数,对混凝土单元的后固化收缩建模的程序选择以及对土壤/结构界面建模的程序选择。该参数研究的结果为实际设计目的的有限元模型的开发提供了指导。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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