Finite element simulation of multiphase flow in oil reservoirs - Comsol Multiphysics as fast prototyping tool in reservoir simulation

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Reservoir simulation is a powerful tool to mimic the formation behaviour during primary production and later on for planning enhanced oil recovery (EOR) pattern. However, all available commercial and developed scientific/academic software for this purpose is based on either finite difference method (FDM) or finite volume method (FVM). Recently finite element method started to gain more attention in the scientific and commercial practices due to its robust results and the ability to deal with complex boundaries. COMSOL Multiphysics is a finite element method (FEM)-based software, having very special features, which are different from standard reservoir engineering software packages like Eclipse or CMG, which are black box-type software. The most important feature of the COMSOL is that user can see equation and modify it - customize for specific conditions and objectives, as well as couple different physics together and apply different solvers, which are under user’s disposal...

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Oil reservoir simulation, enhanced oil recovery methods, finite element method, comsol multiphysics, mathematical models of two-phase immiscible flow of water and heavy oil

Короткий адрес: https://sciup.org/140246556

IDR: 140246556   |   DOI: 10.17073/2500-0632-2019-3-220-226

Список литературы Finite element simulation of multiphase flow in oil reservoirs - Comsol Multiphysics as fast prototyping tool in reservoir simulation

  • Turgay Ertekin, Jamal Abu-Kassem, Gregory King, Basic applied reservoir simulation, SPE textbook series vol.7, Richardson, Texas, 2001.
  • Zhangxin Chen, Guanren Huan, Yuanle Ma, Computational methods in multiphase flows in porous media, SIAM-Philadelphia, 2006.
  • Jan Dirk Jansen. A Systems description of flow through porous media, Springer, 2013.
  • Zhangxin Chen, Reservoir simulation: Mathematical techniques in oil recovery, SIAM-Philadelphia, 2007.
  • Martin J. Blunt, Multiphase flow in permeable media: A pore-scale perspective, Cambridge University press, Cambridge, 2017.
  • COMSOL Multiphysics Reference Manual, Version 5.2'', COMSOL Inc., (2017)
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