普通稠油原位乳化降黏驱微观渗流特征可视化研究
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张民(1983—),男,山东烟台人,高级工程师,博士,从事油气开发渗流机理研究。E-mail:zhangminupc@126.com。

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国家自然科学基金创业创新发展联合基金“难采稠油多元热复合高效开发机理与关键技术基础研究”(U20B6003),中国石化股份公司课题“浅薄层超稠油多元热复合开发关键技术研究与应用”(P21037-4)。


Visualization of microscopic flow characteristics for in-situ emulsification and viscosity reduction development in common heavy oil reservoirs
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    摘要:

    普通稠油乳化降黏驱是表面活性剂驱和乳状液驱的综合过程,既包含表面活性剂的降低界面张力作用,又包含乳状液的调驱作用。为此,采用微观物理模拟可视化研究多孔介质中乳状液的形成机制和运移特征,利用天然露头长岩心并联驱替实验分别进行水驱+乳化降黏驱和直接乳化降黏驱实验,进一步验证乳化降黏驱渗流特征,对比分析乳化降黏驱的驱油效果。实验结果表明,乳化降黏驱在剪切和降低界面张力作用下原位形成乳状液,形成的乳状液通过卡封、架桥和吸附滞留3 种封堵模式导致驱替介质的频繁绕流改道,起到扩大波及范围及提高驱油效率的作用。乳状液运移过程中与多孔介质相互作用,呈三快三慢的渗流特征。由此导致的渗滤作用,使乳状液分布沿着渗流路径和驱替倍数增加呈规律性变化。对比不同注入方式的岩心并联驱替实验结果,发现直接乳化降黏 驱比水驱的启动压力低(分别为0.57 和1.52 MPa),水驱后进行乳化降黏驱的注入压力由0.37 MPa 升至1.17 MPa。随着乳化降黏剂溶液的注入,驱替压力波动式上升直至平衡。相同注入量下,直接乳化降黏驱比水驱+乳化降黏的驱油效率增加了16.69%,进一步证实乳化降黏驱扩大波及范围和提高驱油效率的有效性。

    Abstract:

    Emulsification viscosity reduction flooding in common heavy oil reservoirs is a comprehensive process of surfactant flooding and emulsion flooding,which includes both the interfacial tension reduction effect of surfactants and the control and flooding effect of emulsions. Therefore,the formation mechanism and migration characteristics of emulsions in porous media were first visualized by microphysical simulation. Then,the parallel experiments of natural outcrop long cores were used to conduct water flooding + emulsification viscosity reduction flooding and direct emulsification viscosity reduction flooding experiments. The effort was to further verify the flow characteristics of emulsification viscosity reduction flooding and comparatively analyze the oil displacement effects of emulsified viscosity reducer flooding. The experimental results show that emulsions are formed in situ under the action of shearing and interfacial tension reduction. These emulsions lead to frequent detour flow diversion of displacement media through clamping,bridging,and adsorption,which play the role of expanding swept volume and enhancing oil displacement. In the migration process,the emulsions interact with the porous media to demonstrate the flow characteristics of“slow and fast in respective three aspects.”The resulting percolation causes the distribution of emulsions to change regularly along the flow path and with the increase in the displacement ratio. The results of parallel core displacement experiments under different injection modes were compared. The result indicates that the starting pressure of direct emulsification viscosity reduction flooding(0.57 MPa)is lower than that of water flooding(1.52 MPa),and the injection pressure of emulsification viscosity reduction flooding after water flooding increases from 0.37 MPa to 1.17 MPa. The displacement pressure rises to an equilibrium in a fluctuating manner during the injection of the emulsified viscosity reducer solution. At the same injection ratio,the displacement efficiency of direct emulsification viscosity reduction flooding is increased by 16.69% than that of water flooding + emulsification viscosity reduction flooding. This further verifies that emulsification viscosity reduction flooding can effectively expand the swept volume and raise oil displacement efficiency.

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张民,孙志刚,于春磊,吴光焕,孙宝泉,吴秀英.普通稠油原位乳化降黏驱微观渗流特征可视化研究[J].油气地质与采收率,2023,30(3):152~158

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  • 在线发布日期: 2023-06-16