A Numerical Study of Two-Phase Flow Models with Dynamic Capillary Pressure and Hysteresis

Publication date

2017

Authors

Zhang, Hong
Zegeling, P.A.ISNI 0000000039492568

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

Abstract

Saturation overshoot and pressure overshoot are studied by incorporating dynamic capillary pressure, capillary pressure hysteresis and hysteretic dynamic coefficient with a traditional fractional flow equation in one-dimensional space. Using the method of lines, the discretizations are constructed by applying the Castillo–Grone’s mimetic operators in the space direction and a semi-implicit integrator in the time direction. Convergence tests and conservation properties of the schemes are presented. Computed profiles capture both the saturation overshoot and pressure overshoot phenomena. Comparisons between numerical results and experiments illustrate the effectiveness and different features of the models.

Keywords

Castillo–Grone’s mimetic operators, Dynamic capillary pressure, Play-type hysteresis, Pressure overshoot, Saturation overshoot, Catalysis, General Chemical Engineering

Citation

Zhang, H & Zegeling, P A 2017, 'A Numerical Study of Two-Phase Flow Models with Dynamic Capillary Pressure and Hysteresis', Transport in Porous Media, vol. 116, no. 2, pp. 825–846. https://doi.org/10.1007/s11242-016-0802-z