An Approach for Steam Propagation and Production Performance in SAGD and Solvent SAGD: Lab Experiment and Simulation

Подход к распространению пара и производственным характеристикам при SAGD и Solvent SAGD: лабораторный эксперимент и моделирование
Aly A. Hamouda, Alireza Zare
2015-11-02

Solvent SAGDSteam Assisted Gravity Drainagehistory-matched simulationsteam chamber developmenttemperature propagation
Abstract Steam Assisted Gravity Drainage (SAGD) is considered a successful EOR method for heavy oil and bitumen. A two-dimensional physical model is designed to conduct experiments in this study. The consistency of the experimental data obtained was tested. The designed model was instrumented with 15 temperature sensors at different locations aimed at capturing the temperature propagation with distance and time. The experimental consistency tests for stream propagation have helped in understanding the important controlling parameters for the experiments. Steam propagation was mapped to understand the various processes taking place for oil recovery from steam chamber size and shape. The recovery mechanism could, to some extent, be realised. A simulation approach has been developed to history-match the production, and is compared to the used approach in the literature. Numerical simulation of the effect of Solvent SAGD on EOR was investigated. The developed steam chamber by simulated Solvent SAGD, simulated and experimental SAGD, is addressed in the paper. The results present an excellent practical approach to obtaining a developed steam chamber and accordingly identifying mechanisms. The match quality of the history-matched experiment allows a good assessment for production forecast, with understanding and development of the process. The paper contributes to generating more in-depth understanding of heat propagation, chamber development, and the heat transfer mechanism of SAGD.
1
A simulation approach was developed to history-match experimental production and compared to literature methods, providing good match quality for production forecasting.
2
A two-dimensional physical model with 15 temperature sensors was designed and used to capture steam temperature propagation in SAGD experiments.
3
Experimental consistency tests for steam propagation identified important controlling parameters for the experiments and for steam chamber development.
4
Numerical simulations studied Solvent SAGD effects and compared steam chamber development between simulated Solvent SAGD, simulated SAGD, and experimental SAGD.
5
Steam propagation mapping revealed chamber size and shape dynamics that helped elucidate the oil recovery mechanisms in SAGD.

Steam-assisted gravity drainage (SAGD) and solvent SAGD physical 2D laboratory model of heavy oil/bitumen reservoirs with steam chamber development

Steam and heat propagation, steam-chamber development, and resulting production performance (oil recovery and history-matched production forecasting) in SAGD and Solvent SAGD

Publication Details
Publication Date
2015-11-02
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Aly A. Hamouda
Alireza Zare
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%