• Title of article

    Non-iterative phase behavior model with application to surfactant flooding and limited compositional simulation

  • Author/Authors

    Roshanfekr، نويسنده , , M. and Li، نويسنده , , Y. and Johns، نويسنده , , R.T.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    10
  • From page
    166
  • To page
    175
  • Abstract
    Handʹs method is typically used to empirically calculate the equilibrium compositions for ternary systems between two liquid phases. Oil field application of Handʹs method is generally limited to surfactant phase behavior with oil and brine, primarily because the excess oil and brine phases are nearly immiscible. Handʹs method is not accurate to represent liquid–vapor equilibrium, especially as oil and gas become miscible. It also requires iterations, which means there is no guarantee of convergence. s paper, we present a new empirical phase behavior model to replace Handʹs method. The new method is faster and more accurate, and applicable for both surfactant phase behavior and liquid–vapor equilibrium. The new approach is non-iterative and always finds a tie line or its extension even for the limiting tie line at the critical point. Our approach transforms tie lines to a new compositional space, where all tie lines become parallel. Equilibrium compositions are then easily determined in the transformed space. Besides improved accuracy and robustness, the flash calculations for ternary systems show that the new method is up to 100 times faster than conventional calculations using a cubic equations-of-state (EOS), and up to seven times faster than Handʹs method. When incorporated in a compositional simulator, the new method reduces flash calculation time to nearly zero compared to the solution of the pressure/compositional equations. Thus, speedup is proportional to the fraction of time occupied by flash calculations within the simulator. For example, if flash calculations are 50% of total simulation time, speedup is nearly a factor of two using the new approach. This approach is ideally suited for fast recovery estimations for miscible gas floods, and fills the gap between standard or modified black-oil models and fully compositional simulations.
  • Keywords
    Simplified phase behavior model , Limited compositional simulation , Transformation method , Flash calculation
  • Journal title
    Fluid Phase Equilibria
  • Serial Year
    2010
  • Journal title
    Fluid Phase Equilibria
  • Record number

    1987762