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    Hydromechanical Modeling of Unsaturated Flow in Double Porosity Media

    Source: International Journal of Geomechanics:;2016:;Volume ( 016 ):;issue: 006
    Author:
    Jinhyun Choo
    ,
    Joshua A. White
    ,
    Ronaldo I. Borja
    DOI: 10.1061/(ASCE)GM.1943-5622.0000558
    Publisher: American Society of Civil Engineers
    Abstract: Geomaterials with aggregated structure or containing fissures often exhibit a bimodal pore size distribution that can be viewed as two coexisting pore regions of different scales. The double-porosity concept enables continuum modeling of such materials by considering two interacting pore scales satisfying relevant conservation laws. This paper develops a thermodynamically consistent framework for hydromechanical modeling of unsaturated flow in double-porosity media. With an explicit treatment of the two pore scales, conservation laws are formulated incorporating an effective stress tensor that is energy-conjugate to the rate of deformation tensor of the solid matrix. A constitutive framework is developed on the basis of energy-conjugate pairs identified in the first law of thermodynamics, which is then incorporated into a three-field mixed finite-element formulation for double-porosity media. Numerical simulations of laboratory- and field-scale problems are presented to demonstrate the impact of double porosity on the resulting hydromechanical responses.
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      Hydromechanical Modeling of Unsaturated Flow in Double Porosity Media

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4240208
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    contributor authorJinhyun Choo
    contributor authorJoshua A. White
    contributor authorRonaldo I. Borja
    date accessioned2017-12-16T09:13:47Z
    date available2017-12-16T09:13:47Z
    date issued2016
    identifier other%28ASCE%29GM.1943-5622.0000558.pdf
    identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4240208
    description abstractGeomaterials with aggregated structure or containing fissures often exhibit a bimodal pore size distribution that can be viewed as two coexisting pore regions of different scales. The double-porosity concept enables continuum modeling of such materials by considering two interacting pore scales satisfying relevant conservation laws. This paper develops a thermodynamically consistent framework for hydromechanical modeling of unsaturated flow in double-porosity media. With an explicit treatment of the two pore scales, conservation laws are formulated incorporating an effective stress tensor that is energy-conjugate to the rate of deformation tensor of the solid matrix. A constitutive framework is developed on the basis of energy-conjugate pairs identified in the first law of thermodynamics, which is then incorporated into a three-field mixed finite-element formulation for double-porosity media. Numerical simulations of laboratory- and field-scale problems are presented to demonstrate the impact of double porosity on the resulting hydromechanical responses.
    publisherAmerican Society of Civil Engineers
    titleHydromechanical Modeling of Unsaturated Flow in Double Porosity Media
    typeJournal Paper
    journal volume16
    journal issue6
    journal titleInternational Journal of Geomechanics
    identifier doi10.1061/(ASCE)GM.1943-5622.0000558
    treeInternational Journal of Geomechanics:;2016:;Volume ( 016 ):;issue: 006
    contenttypeFulltext
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