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Stress-seepage-damage coupling modelling method for tunnel in rich water region

机译:富水域隧道应力渗流损伤耦合模型方法

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PurposeThis paper aims at the problem of surrounding rock excavation damage zone of tunneling in the rich water region, this paper aims to propose a new seepage-stress-damage coupling model and studied the numerical algorithm. This reflects the characteristics of rock damage evolution, accompanied by plastic flow deformation and multi-field interaction.Design/methodology/approachFirst of all, rock elastoplastic damage constitutive model based on the Drucker-Prager criterion is established, the fully implicit return mapping algorithm is adopted to realize the numerical solution. Second, based on the relation between damage variation and permeability coefficient, the rock stress-seepage-damage model and multi-field coupling solving iterative method are presented. Finally, using the C++ language compiled the corresponding programs and simulated tunnel engineering in the rich water region.FindingsResults show that difference evolution-based back analysis inversed damage parameters well, at the same time the established coupling model and calculating program have more advantages than general conventional methods. Multiple field coupling effects should be more considered for the design of tunnel support.Originality/valueThe proposed method provides an effective numerical simulation method for the construction of the tunnel and other geotechnical engineering involved underground water problems.
机译:本文旨在提出新的渗流压力损伤耦合模型并研究了新渗流压力损伤耦合模型的隧道隧道隧道隧道损伤区的问题。这反映了岩石损伤演化的特点,伴随着塑料流动变形和多场交互.Design/methodology/approach第一,建立了基于Drucker-Prager标准的岩石弹塑性损伤本构模型,完全隐含的返回映射算法是采用来实现数值解决方案。其次,基于损伤变化和渗透系数之间的关系,提出了岩石应力 - 渗流损伤模型和多场耦合探讨迭代方法。最后,使用C ++语言编译了富水域的相应程序和模拟隧道工程.FindingsResults显示差异的基于进化的后分分析逆转参数良好,同时建立的耦合模型和计算程序具有比一般优势更多常规方法。对于隧道载体的设计,应更考虑多场耦合效果。提出的方法提供了一种有效的数值模拟方法,用于建造隧道和其他岩土工程涉及地下水问题。

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