Effects of Solvent Properties and Injection Strategies on Solvent-Enhanced Steam Flooding for Thin Heavy Oil Reservoirs with Semi-Analytical Approach
Влияние свойств растворителя и стратегий закачки на растворительно-усиленное паровое заводнение тонких пластов тяжелой нефти: полуаналитический подход
2017-07-01
SCID: 54.1/9matdgfe
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SESFSolvent-Enhanced Steam Floodinginjection strategiessemi-analytical modelsolvent properties
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Abstract (AI)
Compared with conventional steam flooding and Steam-Assisted Gravity Drainage (SAGD), Solvent-Enhanced Steam Flooding (SESF) is considered a more effective method for improving heavy oil recovery in thin reservoirs in terms of higher thermal efficiency and oil production rate. However, there remains a deficiency of accurate and efficient methods to evaluate and design an SESF project in the field. A semi-analytical model is proposed in this paper to predict the recovery performance of SESF and investigate the effects of solvent properties and injection strategies on the SESF process for thin heavy oil reservoirs. The proposed model provides a simple method to simulate not only single solvent injection but also multi-solvent injection by cooperating different values of solvent operating thickness and solvent solubility. To validate the model’s accuracy, comparisons are made between the proposed model results and the numerical simulation results for a specific heavy oil reservoir case. The results indicate that SESF can achieve a considerably higher oil production rate at the early recovery stage than steam flooding. Moreover, the paper also demonstrates that a higher injection rate results in a lower thermal efficiency increment when well spacing is constant. Nevertheless, a high injection rate may also be suitable for longer well spacing owing to the improvement of the viscosity profile beyond the edge of the steam zone caused by longer contact time between the solvent and crude oil.
Key Findings
1
A semi-analytical model is proposed to predict recovery performance of Solvent-Enhanced Steam Flooding (SESF) in thin heavy oil reservoirs.
2
High injection rates can be advantageous for longer well spacing due to improved viscosity profile beyond the steam zone from longer solvent–oil contact time.
3
Higher injection rates reduce the incremental thermal efficiency (when well spacing is constant).
4
SESF achieves a considerably higher oil production rate at early recovery stages compared with steam flooding.
5
The model can simulate single-solvent and multi-solvent injection by varying solvent operating thickness and solvent solubility.
6
Validation vs. numerical simulation for a specific heavy oil case shows the semi-analytical model produces accurate results.
Research Object
Solvent-Enhanced Steam Flooding (SESF) process in thin heavy oil reservoirs
Research Subject
Effects of solvent properties and injection strategies on SESF recovery performance, including oil production rate, thermal efficiency, solvent operating thickness, solvent solubility, injection rate, well spacing, and viscosity-profile evolution as predicted by a semi-analytical model
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2017-07-01
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References available in scid.ai7
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Semi-Analytical Modeling of Steam-Solvent Gravity Drainage of Heavy Oil and Bitumen, Part 1: Enhanced Flow Rate at Mobile Zone2012
An Investigation Into Optimal Solvent Use and the Nature of Vapor/Liquid Interface in Solvent-Aided SAGD Process With a Semianalytical Approach2012
Enhanced Oil Recovery - An Overview2007
Steam-Assisted Gravity Drainage: Concept, Development, Performance And Future1994
A New Approach To The Modelling Of Steam-Assisted Gravity Drainage1985
Mechanism of Fluid Displacement in Sands1942
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