Literature DB >> 19255613

Thermodynamically Constrained Averaging Theory Approach for Modeling Flow and Transport Phenomena in Porous Medium Systems: 4. Species Transport Fundamentals.

Cass T Miller1, William G Gray.   

Abstract

This work is the fourth in a series of papers on the thermodynamically constrained averaging theory (TCAT) approach for modeling flow and transport phenomena in multiscale porous medium systems. The general TCAT framework and the mathematical foundation presented in previous works are built upon by formulating macroscale models for conservation of mass, momentum, and energy, and the balance of entropy for a species in a phase volume, interface, and common curve. In addition, classical irreversible thermodynamic relations for species in entities are averaged from the microscale to the macroscale. Finally, we comment on alternative approaches that can be used to connect species and entity conservation equations to a constrained system entropy inequality, which is a key component of the TCAT approach. The formulations detailed in this work can be built upon to develop models for species transport and reactions in a variety of multiphase systems.

Year:  2008        PMID: 19255613      PMCID: PMC2587001          DOI: 10.1016/j.advwatres.2007.11.004

Source DB:  PubMed          Journal:  Adv Water Resour        ISSN: 0309-1708            Impact factor:   4.510


  5 in total

1.  Thermodynamically Constrained Averaging Theory Approach for Modeling Flow and Transport Phenomena in Porous Medium Systems: 7. Single-Phase Megascale Flow Models.

Authors:  William G Gray; Cass T Miller
Journal:  Adv Water Resour       Date:  2009-08-01       Impact factor: 4.510

2.  Thermodynamically Constrained Averaging Theory Approach for Modeling Flow and Transport Phenomena in Porous Medium Systems: 8. Interface and Common Curve Dynamics.

Authors:  William G Gray; Cass T Miller
Journal:  Adv Water Resour       Date:  2010-12-01       Impact factor: 4.510

3.  A continuum mechanical framework for modeling tumor growth and treatment in two- and three-phase systems.

Authors:  Cass T Miller; William G Gray; Bernhard A Schrefler
Journal:  Arch Appl Mech       Date:  2021-06-09       Impact factor: 2.467

4.  Averaging Theory for Description of Environmental Problems: What Have We Learned?

Authors:  William G Gray; Cass T Miller; Bernhard A Schrefler
Journal:  Adv Water Resour       Date:  2013-01-01       Impact factor: 4.510

5.  Thermodynamically Constrained Averaging Theory Approach for Modeling Flow and Transport Phenomena in Porous Medium Systems: 5. Single-Fluid-Phase Transport.

Authors:  William G Gray; Cass T Miller
Journal:  Adv Water Resour       Date:  2009-05-01       Impact factor: 4.510

  5 in total

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