利用MATLAB油藏模拟工具箱(MRST)评价超声能量对提高采收率的效果

U. Hassan, J. Ajienka, Alhaji Dodo Ibrahim Sulaiman
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引用次数: 3

摘要

在自然能源耗尽后,石油工业采用了许多方法从油藏中回收更多的石油。在本研究工作中,超声波能量作为一种提高水驱采收率的方法进行了试验。本研究工作采用的方法是使用MATLAB油藏模拟工具箱(MRST-2017a)进行数值模拟。将超声能量源方程纳入MRST剩余能量方程。将声衰减压力方程作为MRST中残余压力方程的一部分进行建模。用波应力方程模拟了超声对孔壁变形的影响。采用两相(油/水)黑油模型模拟流体流动。模拟结果表明,超声能量对储层性能有影响,即流体流量增加,孔隙压力和温度升高,导致油粘度降低,从而提高流度比。然而,随着传播距离的增加,超声能量的衰减会增加,但这种影响可以通过增加超声功率的强度来补偿。然而,高功率强度会对储层孔喉产生应力。结果还表明,高孔隙度和高渗透率对声能性能的影响主要是由于声波吸收率的增加。关键词:超声能,提高采收率,油藏仿真工具箱,MATLAB
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the performance of ultrasound energy on improved oil recovery using MATLAB reservoir simulation toolbox (MRST)
There are many processes the oil industry used to recover more oil from the reservoir after the natural energy is depleted. In this research work, ultrasound energy has been tested as a method of improving oil recovery after waterflooding. The method used in this research work was a numerical simulation using MATLAB Reservoir Simulation Toolbox (MRST-2017a). Ultrasound energy source equation was incorporated into the residual energy equation in the MRST. Acoustic attenuation pressure equation was modelled as part of the residual pressure equation in the MRST. Effect of ultrasound waves on pore wall deformation was also modelled from waves stress equation. Two-phase (oil/water) black oil model was used to simulate fluid flow. Results obtained from the simulation runs show that the ultrasound energy has an impact on reservoir performance i.e. increase in fluid flowrates and pore pressure and temperature rise which led to oil viscosity reduction and consequently improve mobility ratio. However, attenuation of ultrasound energy increases with propagation distance, but this effect was compensated by increasing the intensity of the ultrasound power. Though, high power intensity induced stress on the reservoir pore throat. Results obtained also show that high porosity and permeability values affect the performance of the acoustic energy basically due to an increase in the rate of waves absorption. Key words: Ultrasound energy, improved oil recovery, reservoir simulation toolbox, MATLAB.
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