Modelling and Upscaling Unstable Miscible Displacement Processes: Characterisation of Physical Instabilities
- 18 October 2021
- conference paper
- conference paper
- Published by Society of Petroleum Engineers (SPE) in Day 4 Thu, October 21, 2021
Abstract
The compositional simulations are required to model CO2 flooding are computationally expensive particularly for fine-gridded models that have high resolutions, and many components. Upscaling procedures can be used in the subsurface flow models to reduce the high computation requirements of the fine grid simulations and accurately model miscible CO2 flooding. However, the effects of physical instabilities are often not well represented and captured by the upscaling procedures. This paper presents an approach for upscaling of miscible displacements is presented which adequately represents physical instabilities such as viscous and heterogeneity induced fingering on coarser grids using pseudoisation techniques. The approach was applied to compositional numerical simulations of two-dimensional reservoir models with a focus on CO2 injection. Our approach is based on the pseudoisation of relative permeability and the application of transport coefficients to upscale viscous fingering and heterogeneity-induced channelling in a multi-contact miscible CO2 injection. Pseudo-relative permeability curves were computed using a pseudoisation technique and applied in combination with transport coefficients to upscale the behaviour of fine-scale miscible CO2 flood simulations to coarser scales. The accuracy of the results of the pseudoisation procedures were assessed by applying statistical analysis to compare them to the results of the fine grid simulations. It is observed from the results that the coarse models provide accurate predictions of the miscible displacement process and that the fingering regimes are adequately captured in the coarse models. The study presents a framework that can be employed to represent the dynamics of physical instabilities associated with miscible CO2 displacements in upscaled coarser grid reservoir models.Keywords
This publication has 19 references indexed in Scilit:
- New upscaling technique for compositional reservoir simulations of miscible gas injectionJournal of Petroleum Science and Engineering, 2019
- Scaling up the interplay of fingering and channeling for unstable water/polymer floods in viscous-oil reservoirsJournal of Petroleum Science and Engineering, 2018
- Upscaling for Compositional Reservoir SimulationSPE Journal, 2016
- Field-scale investigation of different miscible CO2-injection modes to improve oil recovery in a clastic highly heterogeneous reservoirJournal of Petroleum Exploration and Production Technology, 2016
- Modeling and Upscaling Unstable Water and Polymer Floods: Dynamic Characterization of the Effective Finger ZonePublished by Society of Petroleum Engineers (SPE) ,2016
- A coarse-scale compositional modelComputational Geosciences, 2014
- Transport Coefficients for Compositional Simulation with Coarse Grids in Heterogeneous MediaSPE Advanced Technology Series, 1994
- Carbon dioxide in enhanced oil recoveryEnergy Conversion and Management, 1993
- Rigorous Black Oil Pseudo FunctionsPublished by Society of Petroleum Engineers (SPE) ,1991
- Simulation of Stratified Waterflooding by Pseudo Relative Permeability CurvesJournal of Petroleum Technology, 1971