Coupled thermo-hydro-mechanical model with consideration of thermal-osmosis based on modified mixture theory
A coupled formulation based on non-equilibrium thermodynamics, Biot’s elasticity is derived to model thermal-osmotic flow in very low permeability rock. Darcy’s law has been modified by incorporating thermal effects from the dissipation process by using standard arguments of non-equilibrium therm...
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my.utp.eprints.109442017-03-20T01:59:24Z Coupled thermo-hydro-mechanical model with consideration of thermal-osmosis based on modified mixture theory Chen, Xiaohui Pao, William K. S. Li, Xikui TJ Mechanical engineering and machinery A coupled formulation based on non-equilibrium thermodynamics, Biot’s elasticity is derived to model thermal-osmotic flow in very low permeability rock. Darcy’s law has been modified by incorporating thermal effects from the dissipation process by using standard arguments of non-equilibrium thermodynamics. The relationship of chemical potential of water and pore water pressure has been analysed. Helmholtz free energy is used to construct the structure of the mechanics model. The derived coupled equations can be validated by comparing with those from Mechanics approach. Finally, finite elements are used to solve the governing equations. The numerical results show the thermal-osmosis has an important effect on water transport in very low permeability porous media. 2013 Citation Index Journal PeerReviewed application/pdf http://eprints.utp.edu.my/10944/1/Coupled%20THM%20model%20with%20consideration%20of%20thermal%20osmosis%20based%20on%20modified%20mixture%20theory.pdf Chen, Xiaohui and Pao, William K. S. and Li, Xikui (2013) Coupled thermo-hydro-mechanical model with consideration of thermal-osmosis based on modified mixture theory. [Citation Index Journal] http://eprints.utp.edu.my/10944/ |
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TJ Mechanical engineering and machinery Chen, Xiaohui Pao, William K. S. Li, Xikui Coupled thermo-hydro-mechanical model with consideration of thermal-osmosis based on modified mixture theory |
description |
A coupled formulation based on non-equilibrium thermodynamics, Biot’s elasticity is
derived to model thermal-osmotic flow in very low permeability rock. Darcy’s law has been
modified by incorporating thermal effects from the dissipation process by using standard
arguments of non-equilibrium thermodynamics. The relationship of chemical potential of water and pore water pressure has been analysed. Helmholtz free energy is used to construct the structure of the mechanics model. The derived coupled equations can be validated by comparing with those from Mechanics approach. Finally, finite elements are used to solve the governing equations. The numerical results show the thermal-osmosis has an important effect on water transport in very low permeability porous media. |
format |
Citation Index Journal |
author |
Chen, Xiaohui Pao, William K. S. Li, Xikui |
author_facet |
Chen, Xiaohui Pao, William K. S. Li, Xikui |
author_sort |
Chen, Xiaohui |
title |
Coupled thermo-hydro-mechanical model with consideration of
thermal-osmosis based on modified mixture theory |
title_short |
Coupled thermo-hydro-mechanical model with consideration of
thermal-osmosis based on modified mixture theory |
title_full |
Coupled thermo-hydro-mechanical model with consideration of
thermal-osmosis based on modified mixture theory |
title_fullStr |
Coupled thermo-hydro-mechanical model with consideration of
thermal-osmosis based on modified mixture theory |
title_full_unstemmed |
Coupled thermo-hydro-mechanical model with consideration of
thermal-osmosis based on modified mixture theory |
title_sort |
coupled thermo-hydro-mechanical model with consideration of
thermal-osmosis based on modified mixture theory |
publishDate |
2013 |
url |
http://eprints.utp.edu.my/10944/1/Coupled%20THM%20model%20with%20consideration%20of%20thermal%20osmosis%20based%20on%20modified%20mixture%20theory.pdf http://eprints.utp.edu.my/10944/ |
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