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首页> 外文期刊>Journal of Petroleum Science & Engineering >Investigating the dynamical stability of heavy crude oil-water systems using stirred tank
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Investigating the dynamical stability of heavy crude oil-water systems using stirred tank

机译:使用搅拌槽调查重型原油水系统的动力稳定性

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摘要

In petroleum industry, the stability of oil-water emulsions has a significant influence on multiphase flow and oil-water separation; however, there is a lack of quantitative research on the stability of heavy oil emulsions under flowing conditions. Here, emulsion stability was characterized by the free water fraction, and experiments using a stirred tank were carried out to investigate the stability of heavy crude oil emulsions. Sensitivity analysis of different variables such as temperature, shear rate, emulsifier dosage, salinity, and initial water fraction of oil-water mixture were conducted by measuring the free water after stirring. Free water fractions under flowing conditions were determined by extrapolation of the separated water fraction to the precise moment when stirring was stopped. Additionally, the viscosity of emulsions under corresponding experimental conditions was measured by the method of stirring. It was found that for partially emulsified heavy oil emulsion systems, the stability of the system increased with the initial water fraction, salinity, shear strength and emulsifier dosage, and decreased with the settling temperature. Based on the experimental results, a preliminary water separating fraction model (to evaluate the stability of the heavy crude oil-water system) and a viscosity model were proposed. The power law equation might well fit the data with relative deviation below 13.75% and 7.28%, respectively. The stability evaluation model and viscosity calculation model may prove beneficial in estimating pipeline flow conditions, and helping to design transportation arrangements in industrial applications.
机译:在石油工业中,油水乳液的稳定性对多相流和油水分离具有显着影响;然而,对流动条件下重油乳液的稳定性缺乏定量研究。这里,乳液稳定性的特征在于通过游离水分馏分,并进行使用搅拌槽的实验,以研究重质原油乳液的稳定性。通过在搅拌后测量游离水进行水 - 水混合物的温度,剪切速率,乳化剂剂量,盐度和初始水分敏感性分析,如温度,剪切速率,乳化剂剂量,盐度和初始水分。通过将分离的水分分布到停止时,通过将分离的水分分布到精确时刻来确定流动条件下的游离水分。另外,通过搅拌方法测量相应的实验条件下的乳液的粘度。结果发现,对于部分乳化的重油乳液系统,系统的稳定性随着初始水分,盐度,剪切强度和乳化剂剂量而增加,并随着沉降温度降低。基于实验结果,提出了一种初步水分离级分模型(以评价重原油水系统的稳定性)和粘度模型。电力法方程可能很好地适合具有低于13.75%和7.28%的相对偏差的数据。稳定性评估模型和粘度计算模型可能在估计管道流动条件下有益,并有助于设计工业应用中的运输装置。

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  • 作者单位

    China Univ Petr Beijing Key Lab Urban Oil &

    Gas Distribut Technol Natl Engn Lab Pipeline Safety Surface Engn Pilot Test Ctr Beijing 102249 Peoples R China;

    China Univ Petr Beijing Key Lab Urban Oil &

    Gas Distribut Technol Natl Engn Lab Pipeline Safety Surface Engn Pilot Test Ctr Beijing 102249 Peoples R China;

    China Univ Petr Beijing Key Lab Urban Oil &

    Gas Distribut Technol Natl Engn Lab Pipeline Safety Surface Engn Pilot Test Ctr Beijing 102249 Peoples R China;

    China Univ Petr Beijing Key Lab Urban Oil &

    Gas Distribut Technol Natl Engn Lab Pipeline Safety Surface Engn Pilot Test Ctr Beijing 102249 Peoples R China;

    China Univ Petr Beijing Key Lab Urban Oil &

    Gas Distribut Technol Natl Engn Lab Pipeline Safety Surface Engn Pilot Test Ctr Beijing 102249 Peoples R China;

    China Univ Petr Beijing Key Lab Urban Oil &

    Gas Distribut Technol Natl Engn Lab Pipeline Safety Surface Engn Pilot Test Ctr Beijing 102249 Peoples R China;

    Xian Changqing Technol Engn Co Ltd Beijing 710018 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业 ;
  • 关键词

    Heavy oil; Oil-water system; Stability; Viscosity; Interfacial phenomena; Emulsification;

    机译:重油;油水系统;稳定性;粘度;界面现象;乳化;

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