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Microwave Heating as an Enhanced Oil Recovery Method-Potentials and Effective Parameters

机译:微波加热作为一种改进的采油方法-电位和有效参数

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摘要

Different thermal techniques are used worldwide to increase recovery from heavy and ultra-heavy oil reservoirs. The conventional techniques of thermal enhanced oil recovery methods, because of excessive heat loss are not effective for recovery heavy oil reservoirs or deep wells. One way to introduce heat to the reservoir in a controlled manner is microwave heating. Different experiences showed that the successful production by microwave heating strongly depends on the initial conditions of the reservoir, such as initial water saturation and water salinity. The criteria for these parameters to improve the performance of the method are not well known yet. In this project, different experiments were conducted to study the effects of the main parameters on the performance of enhanced oil recovery by microwave heating. A Teflon core holder packed with glass beads was designed to study the recovery of a heavy crude oil sample from an Iranian reservoir under microwave heating. The core was saturated by crude oil and water and the influences of operational parameters, such as heating time, salinity, and initial water saturation on wave absorption were tested. The authors' experiment showed that the main mechanisms for enhancing the oil recovery were gravity drainage and movement due to viscosity reduction.
机译:世界各地使用不同的热力技术来提高从稠油和超重油藏中的采收率。由于过多的热量损失,热增强油采收方法的常规技术对于回收重油储层或深井无效。一种以受控方式将热量引入储器的方法是微波加热。不同的经验表明,微波加热的成功生产很大程度上取决于储层的初始条件,例如初始水饱和度和水盐度。这些参数以提高方法性能的标准尚不为人所知。在该项目中,进行了不同的实验,以研究主要参数对微波加热提高采收率性能的影响。设计了装有玻璃珠的铁氟龙堆芯支架,以研究在微波加热下从伊朗储层中回收重质原油样品的方法。岩心被原油和水饱和,并测试了加热时间,盐度和初始水饱和度等操作参数对波吸收的影响。作者的实验表明,提高原油采收率的主要机理是重力降低和粘度降低引起的运动。

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