胜利油田典型区块稠油化学降黏前后理化特征
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师忠卿(1973—),男,江苏徐州人,高级工程师,从事采油工程技术管理工作。E-mail:shizhq.slyt@sinopec.com。

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Study on physicochemical characteristics of heavy oil before and after chemical viscosity reduction in typical blocks of Shengli Oilfield
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    摘要:

    胜利油田稠油化学降黏冷采技术应用规模逐年递增,但降黏剂对稠油理化特征的影响规律尚不明确。收集典型区块稠油样品开展了稠油降黏前后四组分分析、相对分子质量测试、界面流变性能评价和微观形貌表征。研究结果表明:沥青质含量是影响稠油黏度的主要因素;降黏剂分子通过扩散、渗透和吸附作用削弱胶质、沥青质聚集体间的相互作用,使相对分子质量降低;降黏剂分子作用下的油水相双重吸附过程引起界面膜强度下降,增加油滴的可变形性;降黏剂处理后稠油样品中的团簇状聚集体结构被破坏,胶质、沥青质分散相向饱和分、芳香分液相转变,原油流动性明显提升。

    Abstract:

    The application scale of chemical viscosity reduction and cold recovery technology for heavy oil in Shengli Oilfield is increasing year by year. However,the influence of viscosity reducers on the physicochemical characteristics of heavy oil is not clear.By collecting heavy oil samples from typical blocks,the four-component analysis,relative molecular mass test,interfacial rheological property evaluation,and microscopic morphology characterization of heavy oil before and after viscosity reduction were carried out. The results show that the asphaltene content is the main factor affecting the viscosity of heavy oil. Viscosity reducer molecules weaken the interaction between resin and asphaltene aggregates through diffusion,penetration,and adsorption,resulting in a decrease in relative molecular mass. The double adsorption process of the oil-water phase under the action of viscosity reducer molecules causes a decrease in interfacial film strength and increases the deformability of oil droplets. After the viscosity reducer treatment,the cluster-like aggregate structure in the heavy oil sample is destroyed. The dispersed phase of resin and asphaltene changed to the liquid phase of saturated and aromatic phenol,and the crude oil fluidity is significantly improved.

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师忠卿,徐明明,刘云磊,时宪,管新.胜利油田典型区块稠油化学降黏前后理化特征[J].油气地质与采收率,2023,30(6):104~111

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  • 收稿日期:2022-11-14
  • 最后修改日期:2023-09-14
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  • 在线发布日期: 2023-12-21