On the Practical Use of Advanced Constitutive Laws in Finite Element Underground Structures Analysis

A. Moussa, M. Salah, Laouar Mohamed Salah
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Abstract

Abstract This article emphasizes the value of applying sophisticated constitutive soil models in numerical modeling as daily geotechnical practice. The capabilities of two different constitutive relations for the modeling of the second Heinenoord bored tunnel are compared. The hypoplastic model of Wolffersdorff for granular materials (Hypo) is a relatively simple model without recourse to yield surface or plastic potential based on rational mechanics, whereas the chosen elastoplastic model, the Hardening Soil Model (HSM) belongs to the non-associative plasticity with double hardening. A modification of the hypoplastic model with improved intergranular strain (IGS) was tested, leading to improve model behavior. Comparisons between numerical simulations and experimental values demonstrate the advantages of using the hypoplastic model with improved intergranular strain (IGS).
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先进本构法在地下结构有限元分析中的实际应用
摘要本文强调了复杂的土本构模型在数值模拟中的应用价值。比较了两种不同的本构关系对海恩诺德第二钻孔隧道的建模能力。Wolffersdorff颗粒材料的欠塑性模型(Hypo)是一种基于理性力学的不依赖屈服面和塑性势的相对简单的模型,而所选择的弹塑性模型硬化土模型(HSM)则属于双重硬化的非关联塑性。利用改进的晶间应变(IGS)对发育不良模型进行了改进,从而改善了模型的行为。数值模拟与实验值的对比表明,采用改进晶间应变的欠发育模型具有较好的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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