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Application of CO2-based vapor extraction process for high pressure and temperature heavy oil reservoirs

机译:基于CO2的蒸气萃取工艺在高压高温稠油油藏中的应用

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A considerable portion of hydrocarbon resources in the world comprises heavy oils. Due to the high viscosity of these oils, production from these resources is difficult and requires especial enhanced oil recovery techniques. Carbon dioxide (CO2) based vapor extraction (VAPEX) process has recently been introduced as an effective method for recovery of heavy oils. However, this method has not yet been implemented in oil fields. Previous studies on CO2-based VAPEX were performed in small cells under low pressure ( <9400 kPa) and temperature ( < 60 degrees C) conditions. In this study, the CO2-based VAPEX process was simulated for a real heavy oil reservoir to determine the application of CO2 as a non-condensable carrier gas, co-solvent, and solvent at high pressure (20,685 kPa) and temperature (82.2 degrees C) condition. Different solvent mixtures including propane (C-3), butane (C-4), methane (C-1), and CO2 were utilized. It was found that in high pressure and temperature conditions, CO2 is not a good non-condensable carrier gas due to the miscibility of solvent mixtures (C-3/C-4+CO2) with the reservoir oil. In contrast, CO2 application for heavy oil recovery in such condition is similar to C-3. The simulation results demonstrated that replacement of C-3 with CO2 in the solvent mixtures has led to the recovery of the same amount of oil. This replacement has also caused a higher reduction in the heavy oil viscosity to obtain. Thus, CO2 can be considered as a good alternative for C-3 in the VAPEX process specially for use in high pressure and temperature reservoirs. The outcomes from this research provide a new way for recovery of heavy oils by applying CO2 as a solvent in reservoirs that have high pressure and temperature. (C) 2015 Elsevier B.V. All rights reserved.
机译:世界上相当一部分碳氢化合物资源包括重油。由于这些油的粘度高,因此难以从这些资源进行生产,并且需要特别提高油采收率的技术。最近引入了基于二氧化碳(CO2)的蒸气萃取(VAPEX)工艺,作为回收重油的有效方法。但是,该方法尚未在油田中实施。以前基于CO2的VAPEX的研究是在小型电池中在低压(<9400 kPa)和温度(<60摄氏度)条件下进行的。在这项研究中,模拟了一个基于CO2的VAPEX工艺,用于一个实际的重油储层,以确定在高压(20,685 kPa)和温度(82.2度)下,CO2作为不可凝性载气,助溶剂和溶剂的应用C)条件。使用了不同的溶剂混合物,包括丙烷(C-3),丁烷(C-4),甲烷(C-1)和CO2。已发现在高压和高温条件下,由于溶剂混合物(C-3 / C-4 + CO2)与储层油的混溶性,CO2并不是良好的不可冷凝载气。相比之下,在这种情况下将CO2应用于重油回收的过程类似于C-3。模拟结果表明,用溶剂混合物中的CO2代替C-3可以回收等量的油。这种替代还导致获得的重油粘度的更大降低。因此,在VAPEX工艺中,CO2被认为是C-3的良好替代品,特别适用于高压和高温储层。这项研究的结果为在具有高压和高温的油藏中应用CO2作为溶剂提供了一种重油采收的新方法。 (C)2015 Elsevier B.V.保留所有权利。

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