Zhang Lianfeng, Liu Yanhua, Wang Zhengxin, Li Hao, Zhao Yuheng, Pan Yinuo, Liu Yang, Yuan Weifeng, Hou Jirui
Key Laboratory of Enhanced Oil Recovery of Henan Province, Nanyang 473000, China.
Exploration and Development Research Institute of Henan Oilfield Branch Company, Sinopec, Nanyang 473000, China.
Gels. 2024 Feb 4;10(2):127. doi: 10.3390/gels10020127.
The Henan Oilfield's medium-permeability blocks face challenges such as high temperatures and severe heterogeneity, making conventional flooding systems less effective. The starch gel system is an efficient approach for deep profile control in high-temperature reservoirs, while the nano-MoS system is a promising enhanced oil recovery (EOR) technology for high-temperature low-permeability reservoirs. Combining these two may achieve the dual effects of profile control and oil displacement, significantly enhancing oil recovery in high-temperature heterogeneous reservoirs. The basic performance evaluation of the combination system was carried out under reservoir temperature. Displacement experiments were conducted in target blocks under different permeabilities and extreme disparity core flooding to evaluate the combination system's oil displacement effect. Additionally, the displacement effects and mechanisms of the starch gel and nano-MoS combination system in heterogeneous reservoirs were evaluated by simulating interlayer and intralayer heterogeneity models. The results show that the single nano-MoS system's efficiency decreases with increased core permeability, and its effectiveness is limited in triple and quintuple disparity parallel experiments. After injecting the starch gel-nano-MoS combination system, the enhanced oil recovery effect was significant. The interlayer and intralayer heterogeneous models demonstrated that the primary water flooding mainly affected the high-permeability layers, while the starch gel effectively blocked the dominant channels, forcing the nano-MoS oil displacement system towards unswept areas. This coordination significantly enhanced oil displacement, with the combination system improving recovery by 15.33 and 12.20 percentage points, respectively. This research indicates that the starch gel and nano-MoS combination flooding technique holds promise for enhancing oil recovery in high-temperature heterogeneous reservoirs of Henan Oilfield, providing foundational support for field applications.
河南油田的中渗区块面临高温和严重非均质性等挑战,使得传统注水系统效果不佳。淀粉凝胶体系是高温油藏深部调剖的有效方法,而纳米二硫化钼体系是高温低渗油藏颇具前景的提高采收率(EOR)技术。将两者结合可实现调剖和驱油的双重效果,显著提高高温非均质油藏的采收率。在油藏温度下对复合体系进行了基本性能评价。在不同渗透率的目标区块进行驱替实验,并进行极不均质岩心驱替,以评价复合体系的驱油效果。此外,通过模拟层间和层内非均质性模型,评价了淀粉凝胶与纳米二硫化钼复合体系在非均质油藏中的驱替效果及机理。结果表明,单一纳米二硫化钼体系的效率随岩心渗透率的增加而降低,在三重和五重不均质平行实验中其效果有限。注入淀粉凝胶-纳米二硫化钼复合体系后,提高采收率效果显著。层间和层内非均质模型表明,一次注水主要影响高渗层,而淀粉凝胶有效地封堵了优势通道,迫使纳米二硫化钼驱油体系进入未波及区域。这种协同作用显著提高了驱油效果,复合体系采收率分别提高了15.33和12.20个百分点。该研究表明,淀粉凝胶与纳米二硫化钼复合驱油技术在河南油田高温非均质油藏提高采收率方面具有应用前景,为现场应用提供了基础支撑。