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Experimental investigation of shale oil recovery from Qianjiang core samples by the CO2 huff-n-puff EOR method

机译:CO2 Huff-N-Puff EOR法试验黔江核心样品的页岩油回收实验研究

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CO2 Huff-n-Puff (HnP) is an effective technique for enhancing oil recovery (EOR) that can be applied to shale oil reservoirs faced with poor natural productivity and low water injectivity. The main objective of this study is to investigate the interactions of CO2 and formation crude oil, and evaluate the CO2 HnP performance in shale oil reservoirs in the Qianjiang depression in China. In this study, the variation rules of oil phase behavior, viscosity, saturation pressure, and swelling factor at different CO2 contents of 0 to 65% were studied. A series of HnP experiments were conducted. The factors affecting the oil recovery were discussed, and Nuclear Magnetic Resonance (NMR) tests were conducted on core samples at different stages of the HnP process. The results show that the injected CO2 can make an positive change in the crude oil phase behavior. The oil-gas two-phase region enlarges and the saturation pressure increases as more CO2 is dissolved in the formation oil, which is beneficial to oil production. The dissolution of CO2 in the oil phase increased the oil swelling degree by 1.492 times, and the viscosity decreased from 1.944 to 0.453 mPa s. The HnP experimental results demonstrate that the soaking time should be determined based on the injection pressure. Miscible conditions is a viable option for CO2 HnP as 10% more oil can be produced using miscible HnP and save more than half of the soaking time. The results illustrate that fracture is the most important factor affecting oil recovery, and the performance of HnP EOR on core samples with fractures is almost 25% better than those without fractures. However, the core matrix permeability has an almost negligible effect on the performance of CO2 HnP. The NMR tests show that the oil recovered in the first cycle was dominated by macropores and mesopores, followed by small pores. In the latter HnP cycles, the oil in small pores and micropores becomes the main oil-producing area. This study may provide a better understanding of the CO2 HnP enhanced recovery strategy for shale reservoirs.
机译:CO2 Huff-N-Puff(HNP)是一种有效的技术,用于增强可用于占地面积差,天然生产率差和低水注射率的页岩储存器的有效技术。本研究的主要目的是研究二氧化碳和地层原油的相互作用,评价中国黔江坳陷页岩油藏的二氧化碳HNP性能。在该研究中,研究了不同CO 2含量为0至65%的不同二氧化碳的变异规则,粘度,饱和压力和溶胀因子。进行了一系列HNP实验。讨论了影响石油回收的因素,核磁共振(NMR)试验在HNP工艺的不同阶段进行核心样品。结果表明,注射的CO2可以在原油相行为中产生正变化。随着更多CO 2溶解在地层油中,油气两相区域增大和饱和压力增加,这对石油生产有益。二氧化碳溶解在油相中增加了1.492倍的油溶胀度,粘度从1.944降低至0.453MPa s。 HNP实验结果表明应基于注射压力确定浸泡时间。可混溶条件是CO2 HNP的可行选择,达到10%的油可以使用混溶式HNP生产,并节省超过一半的浸泡时间。结果表明,裂缝是影响溢油的最重要因素,HNP EOR对骨折的核心样品的性能比没有骨折的核心样品差异近25%。然而,核心基质渗透率几乎可以忽略于CO2 HNP性能的影响。 NMR测试表明,在第一周期中回收的油由大孔和中孔支配,然后是小孔。在后一种HNP循环中,小孔和微孔中的油成为主要的油生产区域。本研究可以更好地了解页岩储层的CO2 HNP增强恢复策略。

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    《RSC Advances》 |2019年第49期|共13页
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  • 正文语种 eng
  • 中图分类 化学;
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