This paper presents the implementation of the eXtended Finite Element Method (XFEM) in the general-purpose commercial software package COMSOL Multiphysics for multi-field thermo-hydro-mechanical problems in discontinuous porous media. To this end, an exclusive enrichment strategy is proposed in compliance with the COMSOL modeling structure. COMSOL modules and physics interfaces are adopted to take account of the relevant physical processes involved in thermo-hydro-mechanical coupling analysis, namely: the mechanical deformation, fluid flow in porous media and heat transfer. Essential changes are made to the internal variables of the physics interfaces to ensure consistency in the evaluation of enriched solution fields. The model preprocessing, level-set updates, coupling of the relevant physics and postprocessing procedures are performed adopting a coherent utilization of the COMSOL built-in features along with the COMSOL LiveLink for MATLAB functions. The implementation process, remedies for the treatment of the enriched zones, XFEM framework setup, multiphysics coupling, numerical integration and numerical solution strategy are described in detail. The capabilities and performance of the proposed approach are investigated by examining several multi-field thermo-hydro-mechanical simulations involving single/multiple discontinuities in 2D/3D porous rock settings.
翻译:本文介绍了在通用商用软件包COMSOL多物理学软件包(COMSOL)多功能热水机械在不连续的多孔多管式介质中针对多现场热水机械问题应用电子氧化极精元素法(XFEM)的实施情况,为此,根据COMSOL建模结构提出了独家浓缩战略;采用了COMSOL模块和物理界面,以考虑到热水-机械联动分析所涉及的相关物理过程,即:机械变形、渗漏介质流流和热传输;对物理界面的内部变数进行了基本修改,以确保对浓缩溶液领域评价的一致性;采用了模型预处理、定级更新、相关物理和后处理程序的组合,采用一致使用COMSOL的内建特征以及用于MATLAB功能的COMSOL LiveLink;对浓缩区处理的补救措施、XFEM框架设置、多功能组合、数字整合和数字解决方案战略进行了详细描述;对涉及多层次-三号模型的多层次-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-多层-层-研究-多层-多层-研究-研究-多层-多层-多层-研究。