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An Experimental Study of Cyclic CO2-Injection Process in Unconventional Tight Oil Reservoirs

机译:非常规致密油油藏循环注二氧化碳过程的实验研究

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An experimental-work was conducted for Cyclic CO2 Injection Process (CCIP) in low-permeable tight coresamples. CCIP is an EOR method involving of huff, shut-in and puff periods. The work of CCIP and oil-production in unconventional-formations is generally a task of fluid, rock and operating constraints. Laboratory-work was performed to evaluate numerous designing parameters of CCIP to differentiate the parameters with highly influence on the hydrocarbon-production and to understand the influence of CCIP in tight-reservoirs. The consequences of the above unreliable parameters as well as the water-saturation with different salinity-concentrations on the procedure of CO2 EOR have not been fully comprehended. Therefore, it’s definitely indispensable to evaluate the more important parameters which influence the operation. The principal aim of this work is to ameliorate procedures for designing CCIP in order to optimize CO2-injection and maximize well-production. The outcome shows that the presence of brine will have an adverse impact on oil-production, demonstrating that increasing fracturing-fluid flow back will increase production. This can be used for a better understanding of optimization design of fracturing-fluids. Furthermore, the results show that water-saturation has an effect on the oil-production during CCIP for production period of 15 minutes at the end of the fourth cycle, the oil-recovery for the core that is only saturated with oil (C-1) was 77.74%, compared with 30.40% for core that initially was saturated with water and then with oil (C-2). Finally, it is concluded that in both cases C-1 and C-2, CCIP has potential to produce an incremental oil-recovery from unconventional-reservoirs.
机译:在低渗透性致密岩心样品中进行了循环CO2注入过程(CCIP)的实验工作。 CCIP是一种涉及呼气,关闭和吹气时间的EOR方法。 CCIP的工作和非常规构造的石油生产通常是流体,岩石和作业约束的任务。进行了实验室工作,以评估CCIP的众多设计参数,以区分对烃类生产影响很大的参数,并了解CCIP在致密油藏中的影响。上述不可靠参数的结果以及不同盐度浓度的水饱和度对CO2 EOR程序的影响尚未得到充分理解。因此,评估影响操作的更重要的参数绝对是必不可少的。这项工作的主要目的是改善CCIP的设计程序,以优化CO2注入量并最大限度地提高产量。结果表明,盐水的存在将对石油生产产生不利影响,表明增加的压裂液回流将增加产量。这可以用于更好地理解压裂液的优化设计。此外,结果表明,在第四个循环结束时,水饱和度对CCIP期间15分钟的生产周期的产油量有影响,而仅在油中饱和的岩心的采油量(C-1 )为77.74%,而最初用水和油(C-2)饱和的岩心为30.40%。最后,得出的结论是,在C-1和C-2两种情况下,CCIP都有潜力从非常规油藏中增加采收率。

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