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Effect of nanoparticlesanofluids on the rheology of heavy crude oil and its mobility on porous media at reservoir conditions

机译:纳米颗粒/纳米流体对储层条件下重质原油流变性及其在多孔介质上的迁移率的影响

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摘要

In this work, we evaluate the effect of nanoparticles and nanofluids as viscosity reducers for heavy crude oil (HO). The effect of alumina, silica and acidic silica nanoparticles was evaluated through n-C-7 asphaltene adsorption and aggregation tests using UV-vis spectrophotometry and dynamic light scattering. The nanoparticles of acidic silica were used to prepare a water-based nanofluid at different concentrations in distilled water, and also with the addition of 2.0 wt% of a non-ionic surfactant. The shear rheological response was obtained as function of nanoparticle concentration, temperature (from 298 to 323 K) and shear rate (ranging from 0 to 100 s(-1)). Experimental results indicate that increasing the concentration of nanoparticles in the mixture, up to 10,000 ppm, leads to a viscosity reduction of approximately 90% in comparison with the nanoparticle-free crude oil. At higher concentration of nanoparticles, the effectiveness of the heavy-oil viscosity reduction diminishes. Rheological tests showed a non-Newtonian behavior for the mixtures tested at 298 K. However, as the temperature reaches 323 K the specimens behave in a Newtonian fashion. Coreflooding tests were conducted under typical reservoir conditions of pore and overburden pressures, i.e. 2600 and 3600 psi, respectively, and at 360 K. Results indicate that the addition of nanoparticles increases the heavy oil mobility and leads to an improvement in oil recovery of roughly 16%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们评估了纳米颗粒和纳米流体作为重质原油(HO)降粘剂的效果。通过n-C-7沥青烯的吸附和聚集测试(使用紫外可见分光光度法和动态光散射)评估了氧化铝,二氧化硅和酸性二氧化硅纳米颗粒的效果。酸性二氧化硅的纳米颗粒用于在蒸馏水中制备不同浓度的水基纳米流体,并且还添加了2.0 wt%的非离子表面活性剂。获得的剪切流变响应是纳米粒子浓度,温度(从298到323 K)和剪切速率(从0到100 s(-1)的函数)的函数。实验结果表明,与不含纳米颗粒的原油相比,将混合物中纳米颗粒的浓度提高至10,000 ppm,会使粘度降低约90%。在较高的纳米颗粒浓度下,降低重油粘度的效力降低。流变测试表明,在298 K下测试的混合物具有非牛顿性。但是,当温度达到323 K时,样品以牛顿方式表现。岩心驱油测试是在典型的孔隙压力和上覆压力储层条件下进行的,即分别为2600和3600 psi,压力为360K。结果表明,添加纳米颗粒可提高稠油的流动性,并提高约16的采油率。 %。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Fuel》 |2016年第15期|222-232|共11页
  • 作者单位

    Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Fenomenos Superficie Michael Polanyi, Kra 80 65-223 Bq M3-100A, Medellin, Colombia;

    Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Fenomenos Superficie Michael Polanyi, Kra 80 65-223 Bq M3-100A, Medellin, Colombia|Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Yacimientos Hidrocarburos, Medellin, Colombia;

    Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Yacimientos Hidrocarburos, Medellin, Colombia;

    Univ Wyoming, Dept Chem Engn, Dept 3295, 1000 E Univ Ave, Laramie, WY 82071 USA;

    Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Fenomenos Superficie Michael Polanyi, Kra 80 65-223 Bq M3-100A, Medellin, Colombia|Univ Nacl Colombia Sede Medellin, Fac Minas, Grp Invest Yacimientos Hidrocarburos, Medellin, Colombia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rheology; Heavy crude oil; Asphaltene; Nanoparticles; Nanofluids; Adsorption;

    机译:流变学;重质原油;沥青质;纳米颗粒;纳米流体;吸附;

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