Gas Condensate - PowerPoint PPT Presentation

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Gas Condensate

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... 84 39.18 61.80 97.47 153.75 242.52 382.55 603.41 951.79 1501.32 2368.12 1229.30 1541.70 1818.40 2069.40 2301.40 2517.50 2720.60 2911.70 3092.00 3261.70 3420.50 ... – PowerPoint PPT presentation

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Title: Gas Condensate


1
Gas Condensate Rate Equation
  1. The volumetric rate equation for a gas condensate
    well can be expressed in terms of a 2-phase
    pseudopressure integral. The pseudopressure
    accounts for condensate blockage by including
    relative permeability krg inside the pressure
    integral.
  2. Flow to a gas condensate well can be modeled by
    three regions around the well. Region 1 the
    area closest to the well where both oil and gas
    phases are flowing dictates productivity loss
    or condensate blockage.
  3. The flowing composition is constant in Region 1.
    The single phase gas entering Region 1 has the
    same composition as the producing wellbore
    mixture this observation leads to the the
    equation for krg/kro(p) in Region 1.
  4. The pseudopressure integral can be used to model
    condensate blockage in coarse grid reservoir
    simulation models or it can be combined with
    material balance models to provide a simple model
    of condensate well performance.
  5. The pseudopressure integral can be extended to
    include high-velocity and IFT effects on relative
    permeability -- improvement from high capillary
    numbers and reduction from inertial non-Darcy
    flow.

2
  • References
  • Modeling Gas Condensate Well Deliverability
  • Gas Condensate Relative Permeability for Well
    Calculations
  • Measurement and Correlation of Gas Condensate
    Relative Permeability
  • Generalized Pseudopressure Well Treatment In
    Reservoir Simulation
  • Engineering Calculations of Gas Condensate Well
    Productivity
  • Examples
  • Worked example for estimating gas production rate
  • Spreadsheet for calculating krg/kro and krg in
    Region 1

Notes
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