纳米颗粒改善凝析气藏反凝析伤害实验
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倪军(1981—),男,陕西三原人,教授级高级工程师,博士,从事油气田开发方面的研究。E-mail:njunycyt2010@163.com。

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国家重点研发计划“CO2驱油技术及地质封存安全监测”(2018YFB0605500)。


Experimental study on improving anti-condensation damage of condensate gas reservoir by nanoparticles
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    摘要:

    改变凝析气井近井储层润湿性是减少凝析油堵塞的有效方法。在人工合成聚噻吩包裹的Fe 3 O4纳米颗粒(Fe 3 O4-PT)基础上,采用共沉淀方法对Fe 3 O4-PT纳米颗粒的晶体结构、表面官能团、表面形态和粒径尺寸进行表征。通过开展静态润湿接触角测定实验、静态渗吸实验、单相渗流和两相渗流实验,研究纳米颗粒处理前后岩石的润湿性变化、水油渗吸和单相渗流变化以及气油两相相对渗透率曲线的变化特征,综合评价Fe 3 O4-PT纳米颗粒改善反凝析堵塞的可行性。实验结果表明,聚噻吩涂层不但不会改变Fe 3 O4纳米颗粒的原有结构,还会增强原有衍射峰强度,Fe 3 O4-PT 纳米颗粒平均粒径为17.2 nm。经过纳米流体处理后的岩石,润湿性由液体润湿变为气体润湿或中性润湿,水和凝析油在岩石表面的接触角随纳米颗粒质量分数的增加先增加后降低,随温度的升高而增加,但受压力影响很小,随盐水浓度的增加而减小。水和凝析油渗吸量的降幅分别达69.2%和64.3%。单相水驱或油驱过程中最大压差降幅分别为28.9%和46.7%,两相渗流中,气油两相共渗区变宽,等渗点向左上方偏移,束缚水饱和度和剩余油饱和度减小,两相相对渗透率大幅增加。Fe 3 O4-PT纳米颗粒能够降低水油渗吸效率、减小水油渗流阻力,增加凝析油流动性,提高气/油产量,有效改善反凝析伤害。

    Abstract:

    Changing the wettability of reservoirs near condensate gas wells is an effective method to reduce condensate plugging. The crystal structures,surface functional groups,surface morphology,and particle sizes of Fe 3 O 4-PT nanoparticles are characterized by the coprecipitation method based on the synthetic polythiophene encapsulated Fe 3 O4 nanoparticles(Fe 3O 4-PT). Through experiments of static wetting contact angle measurement,static imbibition,single-phase flow,and two-phase flow,this paper studies the changes in rock wettability,water oil imbibition,single-phase flow before and after nanoparticle treatment,and the change characteristics of gas-oil two-phase relative permeability curves. Additionally,the feasibility of Fe 3 O 4-PT nanoparticles to improve reverse condensate plugging is comprehensively evaluated. The experimental results show that the polythiophene coating will not change the original structure of Fe 3 O4 nanoparticles but enhance the original diffraction peak intensity. The average particle size of Fe 3 O 4-PT nanoparticles is 17.2 nm. After nanofluid treatment,the wettability of rock changes from liquid wetting to gas wetting or neutral wetting. The contact angle between water and condensate on the rock surface first increases and then decreases with the increasing nanoparticle concentration,and increases with the rising temperature. However,it is little affected by pressure and decreases with the increase in salt concentration. The water and condensate imbibition volumes decrease 69.2% and 64.3% respectively. The maximum pressure drops in single-phase water drive or oil drive are reduced by 28.9% and 46.7% respectively. In two-phase flow,the gas-oil two-phase co-permeability areas widen and the isotonic points shift to the upper left. The irreducible water saturation and remaining oil saturation decrease,and the two-phase relative permeability increases significantly. Fe 3 O 4-PT nanoparticles can reduce the imbibition efficiency and flow resistance of water and oil,increase condensate fluidity,and improve gas and oil production,thus effectively improving reverse condensate damage.

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倪军,展转盈,王成俊,黄兴.纳米颗粒改善凝析气藏反凝析伤害实验[J].油气地质与采收率,2023,30(5):110~118

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  • 收稿日期:2022-08-25
  • 最后修改日期:2023-05-25
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  • 在线发布日期: 2023-10-11