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首页> 外文期刊>Advances in Mechanical Engineering >Compositional Simulation on the Flow of Polymeric Solution Alternating CO2 through Heavy Oil Reservoir
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Compositional Simulation on the Flow of Polymeric Solution Alternating CO2 through Heavy Oil Reservoir

机译:聚合物溶液交替转化CO2通过稠油油藏的组成模拟。

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Water-alternating-gas (WAG) method provides superior mobility control of CO2 and improves sweep efficiency. However, WAG process has some problems in highly viscous oil reservoir such as gravity overriding and poor mobility ratio. To examine the applicability of carbon dioxide to recover viscous oil from highly heterogeneous reservoirs, this study suggests polymer-alternating-gas (PAG) process. The process involves a combination of polymer flooding and CO2 injection. In this numerical model, high viscosity of oil and high heterogeneity of reservoir are the main challenges. To confirm the effectiveness of PAG process in the model, four processes (waterflooding, continuous CO2 injection, WAG process, and PAG process) are implemented and recovery factor, WOR, and GOR are compared. Simulation results show that PAG method would increase oil recovery over 45% compared with WAG process. The WAG ratio of 2 is found to be the optimum value for maximum oil recovery. The additional oil recovery of 3% through the 2 WAG ratio is achieved over the base case of 1 : 1 PAG ratio and 180 days cycle period.
机译:水交替气(WAG)方法提供了出色的CO2流动性控制并提高了清扫效率。然而,WAG工艺在高粘性油藏中存在一些问题,例如重力压倒和流动性差。为了研究二氧化碳从高度非均质油藏中回收粘性油的适用性,这项研究提出了聚合物交替气(PAG)工艺。该过程涉及聚合物驱和二氧化碳注入的结合。在该数值模型中,油的高粘度和储层的非均质性是主要挑战。为了确认模型中PAG工艺的有效性,实施了四个工艺(注水,连续注入CO2,WAG工艺和PAG工艺),并对回收率,WOR和GOR进行了比较。仿真结果表明,PAG法比WAG法的采油率提高了45%以上。发现WAG比为2,这是最大采油量的最佳值。在1:1 PAG比例和180天循环周期的基本情况下,通过2 WAG比例可实现3%的额外采油量。

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