Laboratory Study and Field Application of Salt-Tolerant Nano-Emulsion for Enhanced Spontaneous Imbibition Oil Recovery

Wenming Wu, J. Hou, Lixiao Xiao, Ming Qu, Weiju Wang, Infant raj Stephenraj, Yuchen Wen, Wei-Peng Wu, Tuo Liang
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Abstract

Spontaneous imbibition is an effective method to improve the oil recovery of tight reservoirs.The development and research of nano-emulsion provide a new technical direction for improving spontaneous imbibition oil recovery (SIOR) in tight reservoirs.The salinity has a significant effect on the properties and spontaneous imbibition of nano-emulsion, but the effect on the imbibition mechanisms is still unclear.In the paper, thelower nano-emulsion system with core-shell structures, called HS-LNE,is prepared by nano-emulsion dilution method.Afterwards,the properties and imbibition mechanisms of HS-LNE under different salinitiesare studied.Firstly,the particalsize andstability of the HS-LNE system are evaluated by centrifugation and spectroscopy. What's more, the interfacial tension (IFT), wettability,and adsorption experiments under diffierent salinitiesare carried out, and the salinity influences on the physicochemical properties of the HS-LNE system is systematically analyzed.At the same time, the SIORvariationlaw of the HS-LNE system under different salinitiesis comprehensively explored through static spontaneous imbibition experiments.The experimental results show that the HS-LNE system has excellent stability at high salinity. Moreover, as the salinity increasing, the IFT of the HS-LNE system decreased, and the wettability alternationincreased.However, the adsorption on solid interfaceswas not significantly changed and SIOR reached the highest value of 50.27% at the optimal salinity (50×103mg/L). Finally, the HS-LNE system with the optimal salinity was selected for the field test forpermeability enhancement and flooding in Well Gan 128 in Jilin Oilfield. The oil production was increased by 450 t after 5 months, with an estimated validity period of 24 months and a cumulative oil production increase of 1900 t.
耐盐纳米乳液提高自吸采收率的实验室研究与现场应用
自吸是提高致密储层采收率的有效方法。纳米乳化液的开发与研究为提高致密储层自吸采收率提供了新的技术方向。矿化度对纳米乳液的性质和自吸有显著影响,但对其自吸机理的影响尚不清楚。本文采用纳米乳液稀释法制备了具有核-壳结构的纳米乳液体系HS-LNE。在此基础上,研究了hs - line在不同盐度条件下的吸附性能及机理。首先,通过离心和光谱学对hs - line体系的粒度和稳定性进行了评价。进行了不同盐度下的界面张力(IFT)、润湿性和吸附实验,系统分析了盐度对hs - line体系理化性质的影响。同时,通过静态自发渗吸实验,全面探索了不同盐度条件下hs - line体系sio的变化规律。实验结果表明,hs - line体系在高盐度环境下具有优异的稳定性。随着矿化度的升高,hs - line体系的IFT减小,润湿性变化增大。在最佳矿化度(50×103mg/L)下,SIOR达到了50.27%的最大值。最后,在吉林油田甘128井进行了增渗驱油现场试验,选择了最优矿化度的HS-LNE体系。5个月后增产450 t,预计有效期为24个月,累计增产1900 t。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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