Non-Darcy displacement in linear composite and radial aquifer during CO2 sequestration. (1st January 2014)
- Record Type:
- Journal Article
- Title:
- Non-Darcy displacement in linear composite and radial aquifer during CO2 sequestration. (1st January 2014)
- Main Title:
- Non-Darcy displacement in linear composite and radial aquifer during CO2 sequestration
- Authors:
- Zhang, Ronglei
Wu, Yu-Shu
Fakcharoenphol, Perapon - Abstract:
- This paper presents Buckley-Leverett type analytical solutions for non-Darcy displacement of two immiscible fluids in linear and radial composite porous media. High velocity or non-Darcy flow commonly occurs in the vicinity of the wellbore because of smaller flowing cross-sectional areas. However, the effect of such non-Darcy flow has been traditionally ignored. To examine the physical behaviour of multiphase immiscible fluids in non-Darcy displacement, an extended Buckley-Leverett type of solution is discussed. There exists a Buckley-Leverett type solution for describing non-Darcy displacement in a linear homogeneous reservoir. This work extends the solution to flow in linear and radial composite flow systems. We present several new Buckley-Leverett type analytical solutions for non-Darcy flow in more complicated flow geometries of linear and radial composite reservoirs, based on non-Darcy flow models of Forchheimer and Barree-Conway. As application examples, we use the analytical solutions to verify numerical simulation results as well as to discuss non-Darcy displacement behaviour. This theory of non-Darcy flow displacement is applied to evaluate the flow behaviour near wellbore areas during CO2 sequestration. The results show how non-Darcy displacement during CO2 injection in linear and radial composite systems is controlled not only by relative permeability, but also by non-Darcy coefficients, characteristic length, injection rates, as well as discontinuities in theThis paper presents Buckley-Leverett type analytical solutions for non-Darcy displacement of two immiscible fluids in linear and radial composite porous media. High velocity or non-Darcy flow commonly occurs in the vicinity of the wellbore because of smaller flowing cross-sectional areas. However, the effect of such non-Darcy flow has been traditionally ignored. To examine the physical behaviour of multiphase immiscible fluids in non-Darcy displacement, an extended Buckley-Leverett type of solution is discussed. There exists a Buckley-Leverett type solution for describing non-Darcy displacement in a linear homogeneous reservoir. This work extends the solution to flow in linear and radial composite flow systems. We present several new Buckley-Leverett type analytical solutions for non-Darcy flow in more complicated flow geometries of linear and radial composite reservoirs, based on non-Darcy flow models of Forchheimer and Barree-Conway. As application examples, we use the analytical solutions to verify numerical simulation results as well as to discuss non-Darcy displacement behaviour. This theory of non-Darcy flow displacement is applied to evaluate the flow behaviour near wellbore areas during CO2 sequestration. The results show how non-Darcy displacement during CO2 injection in linear and radial composite systems is controlled not only by relative permeability, but also by non-Darcy coefficients, characteristic length, injection rates, as well as discontinuities in the saturation profile across the interfaces between adjacent composite flow domains. … (more)
- Is Part Of:
- International journal of oil, gas and coal technology. Volume 7:Number 3(2014)
- Journal:
- International journal of oil, gas and coal technology
- Issue:
- Volume 7:Number 3(2014)
- Issue Display:
- Volume 7, Issue 3 (2014)
- Year:
- 2014
- Volume:
- 7
- Issue:
- 3
- Issue Sort Value:
- 2014-0007-0003-0000
- Page Start:
- 244
- Page End:
- 262
- Publication Date:
- 2014-01-01
- Subjects:
- non-Darcy flow -- Buckley-Leverett -- Forchheimer -- Barree-Conway -- CO2 sequestration -- composite formation
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662.6 - Journal URLs:
- http://www.inderscience.com/jhome.php?jcode=ijogct ↗
http://www.inderscience.com/ ↗ - Languages:
- English
- ISSNs:
- 1753-3309
- Deposit Type:
- Legaldeposit
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