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Mechanism of Heavy Oil Recovery Driven by Electromagnetic Inductive Heating

机译:电磁感应加热驱动的重油回收机制

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Electromagnetically driven heavy oil recovery is considered as an alternative or as a complementary technique to steam injection methods. Inductive electromagnetic heating (IH) of heavy oil reservoir represents a complicated multi-physics process affected by operating conditions, reservoir and fluid properties. The IH takes place at frequencies of 10-3-1 MHz and the principle is based on the eddy currents generation in the mineralized connate water and its Joule heating. This work presents a numerical simulation study of IH assisted heavy oil recovery. Previously developed coupled electromagnetic and reservoir simulation workflow is applied for this analysis. The workflow incorporates coupling between ANSYS Emag and CMG STARS. The study is focused on the recovery drive mechanism and influence of the reservoir and operating parameters on the production. The IH is realized via closed inductor loop through which alternating current is passed. In our current study we consider twodimensional pay zone completely surrounded by impermeable barriers and two horizontal “SAGD – like” well pairs, a pair of producer (lower well) and inductor (upper one). Different well constraint cases and the sensitivity to fluid and reservoir properties (pay zone thickness, depth of a reservoir, distance between wells and electrical conductivity contrast between pay zone and under-, overburden) are evaluated. Operating pressure plays a significant role for the production. It defines the water boiling temperature and controls underground steam generation and consequently the drive mechanism. The sensitivity to fluid and reservoir properties is estimated in terms of production efficiency and recovery factor. Previous works on this topic did not consider particularly IH in much detail. The results obtained in this work provide a comprehensive understanding on IH assisted heavy oil or bitumen production process, drive mechanism behind it and the ways of improvement of this technology.
机译:电磁驱动的重油回收被认为是蒸汽注射方法的替代或互补技术。重油储存器的电感电磁加热(IH)代表了受运行条件,储层和流体性能影响的复杂的多物理过程。 IH在10-3-1 MHz的频率下进行,原则是基于矿化生成水中产生的涡流和焦耳加热。这项工作提出了对IH辅助重油回收的数值模拟研究。以前开发的耦合电磁和储存器模拟工作流程用于该分析。工作流程包含ANSYS EMAG和CMG星之间的耦合。该研究专注于恢复驱动机构和储层对生产的影响和运行参数。 IH通过闭合电感环实现,通过该循环通过该循环通过该循环。在我们目前的研究中,我们考虑TwoDimensional Pay Zone完全包围不透水的障碍和两个水平的“SAGD”良好的对,一对生产者(较低井)和电感器(上部)。评估不同的井限约案例和流体和储层性能的敏感性(储存区厚度,储层深度,井间和支付区域之间的井间和电导率对比)。操作压力对生产发挥着重要作用。它定义了水沸腾温度并控制地下蒸汽产生,因此驱动机构。在生产效率和恢复因子方面估计了对流体和储层性质的敏感性。以前的工作在这个主题上没有特别细节考虑特别是IH。在这项工作中获得的结果为IH提供了全面的理解,对IH辅助石油或沥青生产过程,驱动机制以及改善这项技术的方式。

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