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Mathematical model and numerical simulation of porous media gas-water fluid- solid coupling with considering gas adsorption

In order to understand the complex interaction between gas-water two-phase seepage and stress field with gas adsorption, a mathematical model of gas-water fluid-solid coupling for rock-coal porous media was established based on the stress equation, mass...

Journal Title: International Journal of Energy and Environment May 2017, Vol.8(3), pp.209-218
Main Author: Wang, Huajun
Other Authors: Wang, Xueli , Feng, Lufei , Liu, Feng , Zhao, Siyuan
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: ISSN: 20762895 ; E-ISSN: 20762909
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recordid: proquest2091585099
title: Mathematical model and numerical simulation of porous media gas-water fluid- solid coupling with considering gas adsorption
format: Article
creator:
  • Wang, Huajun
  • Wang, Xueli
  • Feng, Lufei
  • Liu, Feng
  • Zhao, Siyuan
subjects:
  • International Conferences
  • Software
  • Theory
  • Pores
  • Mathematical Analysis
  • Pores
  • Mathematical Models
  • Deformation
  • Matrix Methods
  • Darcys Law
  • Adsorption
  • Fluid Flow
  • Rocks
  • Permeability
  • Gas Flow
  • Coal
  • Computer Simulation
  • Natural Gas
  • Coupling
  • Volumetric Strain
  • Coal
  • Porous Media
  • Simulation
  • Porous Media
  • Soil Sciences
  • Adsorption
  • Permeability
  • Studies
  • Permeability
  • Coalbed Methane
  • Permeability
  • Pressure
  • Deformation
  • Darcys Law
  • Seepage
  • Porous Materials
  • Adsorption
  • Mathematical Models
  • Engineering
  • Computational Fluid Dynamics
  • Coal
  • Conservation Equations
  • Mathematical Models
  • Strain
  • Seepage
  • Coal
  • Simulation
  • Adsorption
  • Porosity
ispartof: International Journal of Energy and Environment, May 2017, Vol.8(3), pp.209-218
description: In order to understand the complex interaction between gas-water two-phase seepage and stress field with gas adsorption, a mathematical model of gas-water fluid-solid coupling for rock-coal porous media was established based on the stress equation, mass...
language: eng
source:
identifier: ISSN: 20762895 ; E-ISSN: 20762909
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issn:
  • 20762895
  • 2076-2895
  • 20762909
  • 2076-2909
url: Link


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identifierISSN: 20762895 ; E-ISSN: 20762909
subjectInternational Conferences ; Software ; Theory ; Pores ; Mathematical Analysis ; Pores ; Mathematical Models ; Deformation ; Matrix Methods ; Darcys Law ; Adsorption ; Fluid Flow ; Rocks ; Permeability ; Gas Flow ; Coal ; Computer Simulation ; Natural Gas ; Coupling ; Volumetric Strain ; Coal ; Porous Media ; Simulation ; Porous Media ; Soil Sciences ; Adsorption ; Permeability ; Studies ; Permeability ; Coalbed Methane ; Permeability ; Pressure ; Deformation ; Darcys Law ; Seepage ; Porous Materials ; Adsorption ; Mathematical Models ; Engineering ; Computational Fluid Dynamics ; Coal ; Conservation Equations ; Mathematical Models ; Strain ; Seepage ; Coal ; Simulation ; Adsorption ; Porosity
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titleMathematical model and numerical simulation of porous media gas-water fluid- solid coupling with considering gas adsorption
authorWang, Huajun ; Wang, Xueli ; Feng, Lufei ; Liu, Feng ; Zhao, Siyuan
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abstractIn order to understand the complex interaction between gas-water two-phase seepage and stress field with gas adsorption, a mathematical model of gas-water fluid-solid coupling for rock-coal porous media was established based on the stress equation, mass...
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