A unified water/ice kinematics approach for phase-field thermo-hydro-mechanical modeling of frost action in porous media

被引:39
|
作者
Sweidan, Abdel Hassan [1 ]
Heider, Yousef [1 ]
Markert, Bernd [1 ]
机构
[1] Rhein Westfal TH Aachen, Inst Gen Mech, Eilfschornsteinstr 18, D-52062 Aachen, Germany
关键词
Phase-field modeling; Phase-change materials; Freezing in porous media; Unified water-ice kinematics; Thermo-hydro-mechanical coupling; ENERGY STORAGE; ICE FORMATION; HEAT-TRANSFER; FLUID-FLOW; SOIL; SOLIDIFICATION; COMPUTATION; SIMULATION; THERMODYNAMICS; DYNAMICS;
D O I
10.1016/j.cma.2020.113358
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This research work introduces a novel phase-field thermo-hydro-mechanical (P-THM) modeling approach that allows to deeply understand and model the freezing-thawing cyclic process in a fluid-saturated porous medium. In this, a biphasic macroscopic, non-isothermal porous media model, augmented by the phase-field method (PFM), is applied to account for the temperature development, the interstitial pore-fluid flow, and the volumetric deformations due to ice formation (phase change). Utilizing the theory of porous media (TPM) in the continuum mechanical formulation provides a well-founded basis for the description of deformable, fluid-saturated, non-isothermal porous solid materials. Of particular importance in the underlying work is the unified kinematics treatment of the ice and water constituents as a single pore-fluid, where the PFM is employed for the description of the phase transition between both constituents. The PFM is a diffuse-interface approach that relies on the specification of the free energy density function as the main driving force in the phase transition. It employs a scalar-valued, phase-field variable to indicate the state of the pore-fluid, i.e., a solid (ice) or a liquid (water). A significant virtue of using the PFM approach is its viability in the implementation within standard finite element frameworks, as no need to explicitly track the moving boundaries (interfaces) of the phase-change constituent. The numerical examples and comparisons presented at the end of the manuscript demonstrate the ability, reliability and usefulness of the proposed modeling framework in describing the freezing-thawing process in a saturated porous solid under thermal loading within an elastic deformation limit. (c) 2020 Elsevier B.V. All rights reserved.
引用
收藏
页数:29
相关论文
共 50 条
  • [21] Thermo-hydro-mechanical modeling of damage in unsaturated porous media: Theoretical framework and numerical study of the EDZ
    Arson, C.
    Gatmiri, B.
    INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 2012, 36 (03) : 272 - 306
  • [22] Coupled Thermo-Hydro-Mechanical Modeling on the Rongcheng Geothermal Field, China
    Ma, Feng
    Liu, Guihong
    Zhao, Zhihong
    Xu, Haoran
    Wang, Guiling
    ROCK MECHANICS AND ROCK ENGINEERING, 2022, 55 (08) : 5209 - 5233
  • [23] Coupled Thermo-Hydro-Mechanical Modeling on the Rongcheng Geothermal Field, China
    Feng Ma
    Guihong Liu
    Zhihong Zhao
    Haoran Xu
    Guiling Wang
    Rock Mechanics and Rock Engineering, 2022, 55 : 5209 - 5233
  • [24] Uncertainty analysis of thermo-hydro-mechanical coupled processes in heterogeneous porous media
    Watanabe, Norihiro
    Wang, Wenqing
    McDermott, Christopher I.
    Taniguchi, Takeo
    Kolditz, Olaf
    COMPUTATIONAL MECHANICS, 2010, 45 (04) : 263 - 280
  • [25] Thermomechanics of porous media - II: thermo-hydro-mechanical model for compacted bentonite
    Jussila, Petri
    Ruokolainen, Juha
    TRANSPORT IN POROUS MEDIA, 2007, 67 (02) : 275 - 296
  • [26] Numerical study of a thermo-hydro-mechanical damage model for unsaturated porous media
    Arson C.
    Gatmiri B.
    Annals of Solid and Structural Mechanics, 2010, 1 (02) : 59 - 78
  • [27] Uncertainty analysis of thermo-hydro-mechanical coupled processes in heterogeneous porous media
    Norihiro Watanabe
    Wenqing Wang
    Christopher I. McDermott
    Takeo Taniguchi
    Olaf Kolditz
    Computational Mechanics, 2010, 45 : 263 - 280
  • [28] Thermo-hydro-mechanical interactions in porous media: Implications on thermo-active retaining walls
    Sailer, Eleonora
    Taborda, David M. G.
    Zdravkovic, Lidija
    Potts, David M.
    Cui, Wenjie
    COMPUTERS AND GEOTECHNICS, 2021, 135
  • [29] A Water Retention Curve Model for the Simulation of Coupled Thermo-Hydro-Mechanical Processes in Geological Porous Media
    Fuguo Tong
    Lanru Jing
    Tian Bin
    Transport in Porous Media, 2012, 91 : 509 - 530
  • [30] A Water Retention Curve Model for the Simulation of Coupled Thermo-Hydro-Mechanical Processes in Geological Porous Media
    Tong, Fuguo
    Jing, Lanru
    Bin, Tian
    TRANSPORT IN POROUS MEDIA, 2012, 91 (02) : 509 - 530