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Evaluation of the Hybrid Process of Electrical Resistive Heating and Solvent Injection through Numerical Simulations

机译:通过数值模拟评估电阻加热和溶剂注射的杂交过程

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Electrical Resistive Heating (ERH) has been proposed as a thermal recovery method for heavy oil reservoirs with low environmental impact. ERH could potentially be an alternative to steam-related processes in the reservoirs which are not suitable for steam injection methods due to low incipient injectivity and formation incompatibility. Meanwhile, Vapor Extraction (VAPEX) has been tested as an environmentally sustainable oil recovery method in both lab scale and field scale. However, the field test results showed that this process is not efficient and economical due to low mass transfer and low horizontal well efficiency. This paper presents a hybrid process of ERH with Solvent Injection. The hybrid process could enhance horizontal well efficiency and overall oil production rate, with less environmental impact than other steam-related thermal processes. Numerical simulations were conducted to evaluate this process via CMG’s STARS. Well pattern similar to that in classical SAGD process is used. The electrode is placed along with the producer or injector and solvent is injected from the injector. This process has three features which contribute to the enhanced oil flow: (1) the heat from producer establishes good communication between the injector and the producer by reducing viscosity; (2) the in-situ generated heat through ERH along with the horizontal wellbore is insusceptible to reservoir heterogeneity. Thereby the horizontal well conformity can be improved; (3) the solvent can reduce the viscosity of the heavy oil in unheated zone where the ERH can not reach; while it can also assist viscosity reduction of heavy oil in the heated zone. The factors affecting this hybrid process, such as electrode placement, voltage, well distance and heterogeneity effect, lateral pattern and water saturation, were also discussed in this paper. The simulation results showed that this hybrid process can improve the oil rate 2 to 5 times over VAPEX.
机译:电阻加热(ERH)已提出作为重型油藏的热回收方法,其具有低环境影响。 ERH可能是储存器中的蒸汽相关过程中的替代方法,该储存器中不适用于蒸汽注入方法由于低初始的注射性和形成不相容。同时,蒸汽提取(VAPEX)已在实验室规模和现场规模中被测为环境可持续的石油回收方法。然而,现场测试结果表明,由于低质量传递和低水平井效率,该过程是不高效且经济的。本文呈现了溶剂注射的ERH的混合过程。混合过程可以提高水平井效率和整体油生产率,而不是其他与其他蒸汽相关热过程的环境影响。进行数值模拟以通过CMG的恒星评估该过程。使用与经典SAGD过程类似的井模式。将电极与生产者或喷射器一起放置,并从注射器注入溶剂。该过程有三个特征,有助于增强的油流量:(1)通过降低粘度,生产者的热量在喷射器和生产者之间建立良好的通信; (2)原位通过ERH与水平井筒一起产生的热量是对储层异质性的影响。从而可以提高水平良好符合性; (3)溶剂可以减少重新放置的重油中的粘度,其中ERH无法达到;虽然它还可以帮助加热区中重油的粘度降低。在本文还讨论了影响该混合过程的因素,例如电极放置,电压,距离和异质性效果,横向图案和水饱和度。仿真结果表明,该混合过程可以通过VAPEX提高2至5次的油速率。

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