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Gas viscosity

Gas viscosity: A3.2. Viscosity Carr The classical Carr correlation provides an estimate of natural gas viscosity at atmospheric and reservoir conditions. The method includes…

  1. A3.2. Viscosity#

Carr

The classical Carr correlation provides an estimate of natural gas viscosity at atmospheric and reservoir conditions. The method includes two steps:

  1. Calculation of viscosity at atmospheric pressure.
  2. Correction for reservoir pressure and temperature.
    This approach is simple and reliable but may show deviations when hydrogen sulfide (H₂S) is present.

Recommended applicability range:

  • Gas specific gravity (air = 1): 0.55 – 1.55
  • Temperature: 100 – 400 °F
  • Pressure: < 10,000 psi

Lee

The Lee correlation is one of the most widely used methods for calculating natural gas viscosity. It combines ease of use with good accuracy across a broad range of conditions. The formula accounts for the effects of temperature, gas density, and molecular weight through dimensionless parameters. It is well-suited for gases containing a low proportion of non-hydrocarbon components.
Recommended applicability range:

  • Gas specific gravity (air = 1): 0.55 – 1.5
  • Temperature: 100 – 340 °F
  • Methane content (CH₄): > 70%
  • Pressure: 100 – 8000 psi

Dean & Stiel

The Dean & Stiel method is designed for calculating gas viscosity using reduced parameters and is particularly accurate at high pressures and for non-standard gas compositions (e.g., gases containing H₂S and CO₂). The method is based on the principle of corresponding states.
Recommended applicability range:

  • Reduced pressure: 0.1 – 15
  • Reduced temperature: 1 – 3
  • Gas specific gravity (air = 1): 0.5 – 2
  • Gas composition: no limitations
PVT reference