章星, 刘玉涛, 李芳, 王厉强, 唐建云. 水气交替注入过程纳米颗粒对CO2 运移特征的影响[J]. 石油钻采工艺, 2015, 37(6): 70-73. DOI: 10.13639/j.odpt.2015.06.017
引用本文: 章星, 刘玉涛, 李芳, 王厉强, 唐建云. 水气交替注入过程纳米颗粒对CO2 运移特征的影响[J]. 石油钻采工艺, 2015, 37(6): 70-73. DOI: 10.13639/j.odpt.2015.06.017
ZHANG Xing, LIU Yutao, LI Fang, WANG Liqiang, TANG Jianyun. Influence of nanoparticles on CO2 transport characteristics in water alternating gas injection process[J]. Oil Drilling & Production Technology, 2015, 37(6): 70-73. DOI: 10.13639/j.odpt.2015.06.017
Citation: ZHANG Xing, LIU Yutao, LI Fang, WANG Liqiang, TANG Jianyun. Influence of nanoparticles on CO2 transport characteristics in water alternating gas injection process[J]. Oil Drilling & Production Technology, 2015, 37(6): 70-73. DOI: 10.13639/j.odpt.2015.06.017

水气交替注入过程纳米颗粒对CO2 运移特征的影响

Influence of nanoparticles on CO2 transport characteristics in water alternating gas injection process

  • 摘要: 为了有效控制CO2 提高采收率和CO2 埋存过程中CO2 流体的流动性,在储层或砂岩含水层中注入纳米颗粒。室内实验采用CT 扫描仪观察和测量CO2 驱替盐水/ 纳米颗粒溶液以及盐水/ 纳米颗粒溶液驱替CO2 的流动形态和流体饱和度。研究结果表明,纳米颗粒溶液实验中CO2 驱替前缘比较一致并且流体流动较慢,其初始CO2 饱和度和剩余CO2 饱和度要大于盐水实验中的初始CO2 饱和度和剩余CO2 饱和度。纳米颗粒使得CO2 与盐水产生稳定的乳状液,减小流体流动性,增加流体有效黏度。根据Land 方程,盐水实验中C 常量为2.45,纳米颗粒实验中C 为2.25,因此CO2 注入方案的制定应尽量选取小的C 常量,以减缓气水交替注入过程中CO2 的黏性指进,将更多的CO2 滞留或保存在地层中。

     

    Abstract: In order to effectively control CO2 EOR and the fluidity of CO2 fluid in CO2 storage process, the nanoparticles are injected into reservoir or sandstone aquifer. In the indoor test, a CT scanner is used to observe and measure the flow pattern and saturation of fluid in the displacement of brine/nanoparticle solution by CO2 as well as in the displacement of CO2 by brine/nanoparticle solution. The research indicates that, in the nanoparticle solution test, the CO2 displacement fronts are relatively consistent, the flow velocity of fluid is relatively low, and the initial CO2 saturation and residual CO2 saturation are higher than those in brine test. The nanoparticles drive CO2 and brine to form the stable emulsion, reduce the fluidity of fluid, and increase the effective viscosity of fluid. According to the Land Equation, the constant C is 2.45 in brine test and is 2.25 in nanoparticle test. Therefore the constant C should be as less as possible during the formulation of the plan of CO2 injection, so as to slow down the viscosity fingering during the alternate injection of gas and water, and retain or store more CO2 in stratum.

     

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