Numerical Simulation of Non-Darcy Flow in Naturally Fractured Tight Gas Reservoirs for Enhanced Gas Recovery

Author:

Debossam João Gabriel Souza1ORCID,de Freitas Mayksoel Medeiros1ORCID,de Souza Grazione1ORCID,Amaral Souto Helio Pedro1ORCID,Pires Adolfo Puime2ORCID

Affiliation:

1. Departamento de Modelagem Computacional, Instituto Politécnico, Universidade do Estado do Rio de Janeiro, Rua Bonfim 25, Nova Friburgo CEP 28625-570, RJ, Brazil

2. Laboratório de Engenharia e Exploração de Petróleo, Centro de Ciências Exatas e Tecnologia, Universidade Estadual do Norte Fluminense, Macaé CEP 27925-535, RJ, Brazil

Abstract

In this work, we analyze non-Darcy two-component single-phase isothermal flow in naturally fractured tight gas reservoirs. The model is applied in a scenario of enhanced gas recovery (EGR) with the possibility of carbon dioxide storage. The properties of the gases are obtained via the Peng–Robinson equation of state. The finite volume method is used to solve the governing partial differential equations. This process leads to two subsystems of algebraic equations, which, after linearization and use of an operator splitting method, are solved by the conjugate gradient (CG) and biconjugate gradient stabilized (BiCGSTAB) methods for determining the pressure and fraction molar, respectively. We include inertial effects using the Barree and Conway model and gas slippage via a more recent model than Klinkenberg’s, and we use a simplified model for the effects of effective stress. We also utilize a mesh refinement technique to represent the discrete fractures. Finally, several simulations show the influence of inertial, slippage and stress effects on production in fractured tight gas reservoirs.

Funder

Carlos Chagas Filho Foundation for Research Support of the State of Rio de Janeiro

Publisher

MDPI AG

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