About: Mathematical Modeling of Coupled Heat Transport and Water Flow in Freezing Soils and Fractured Rock Masses     Goto   Sponge   NotDistinct   Permalink

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  • In this contribution the model of heat and water transport in frozen porous media and fractured rock masses in conditions of freezing and thawing is analyzed. We present results concerning the existence of the numerical solution after the time discretization. Numerical scheme is based on semi-implicit discretization in time. The spacial discretization is carried out by the finite element method (FEM) and it is implemented in Matlab. We also present an illustrative numerical example and its comparison to the practical experiment.
  • In this contribution the model of heat and water transport in frozen porous media and fractured rock masses in conditions of freezing and thawing is analyzed. We present results concerning the existence of the numerical solution after the time discretization. Numerical scheme is based on semi-implicit discretization in time. The spacial discretization is carried out by the finite element method (FEM) and it is implemented in Matlab. We also present an illustrative numerical example and its comparison to the practical experiment. (en)
Title
  • Mathematical Modeling of Coupled Heat Transport and Water Flow in Freezing Soils and Fractured Rock Masses
  • Mathematical Modeling of Coupled Heat Transport and Water Flow in Freezing Soils and Fractured Rock Masses (en)
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  • Mathematical Modeling of Coupled Heat Transport and Water Flow in Freezing Soils and Fractured Rock Masses
  • Mathematical Modeling of Coupled Heat Transport and Water Flow in Freezing Soils and Fractured Rock Masses (en)
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  • RIV/68407700:21110/14:00218673!RIV15-MSM-21110___
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  • RIV/68407700:21110/14:00218673
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  • Richards' Equation; FEM; Heat Equation; Freezing; Darcy's Law (en)
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  • [B6CC387148B3]
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  • Beneš, Michal
  • Krupička, Lukáš
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  • 21110
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