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Capillary Model of Gravity Elution of High Viscosity Liquid from a Porous Bed with a Low-Viscosity Liquid

机译:从低粘度液体的多孔床中高粘度液体重力洗脱的毛细管模型

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摘要

Modeling of the processes of elution from porous systems is essential importance for development of the removing oily contaminations from the soils and intensification of the oil recovery processes. In the paper, capillary model of gravitational elution of high viscosity substances from the porous medium by using low viscosity liquids was derived. This model allowed for the prediction of changes in time of such parameters like: level of bed saturation with oil, relative bed permeability, liquid flow rate, flow resistance, volume of eluted liquid during the process. When modeling, phenomena and the physical properties associated with the analyzed process, such as, for example, the effects of surface tension, fluids viscosity, specific size of the granular bed, initial oil saturation of bed, variable process driving force, and the flow of liquid through the preferential flow paths, were taken into account. This allowed for the more complete imaging of elution process. The model has been verified on the basis of the results of experimental studies. In addition, the discussion on the behavior of the model due to changes in values of various parameters was carried out.
机译:从多孔系统洗脱过程的建模对于开发从土壤中去除油性污染物和强化采油过程至关重要。本文推导了使用低粘度液体从多孔介质中重力洗脱高粘度物质的毛细管模型。该模型可以预测以下参数随时间的变化,这些参数包括:含油床饱和度,相对床渗透率,液体流速,流动阻力,过程中洗脱液体的体积。在进行建模时,与被分析过程相关的现象和物理特性,例如表面张力,流体粘度,颗粒床的特定尺寸,床的初始油饱和度,可变过程驱动力和流量的影响考虑了通过优先流动路径的液体数量。这样可以对洗脱过程进行更完整的成像。该模型已经根据实验研究的结果进行了验证。此外,还讨论了由于各种参数值的变化而引起的模型行为。

著录项

  • 来源
    《Transport in Porous Media》 |2014年第1期|171-190|共20页
  • 作者单位

    Department of Chemical Engineering, Faculty of Process and Environmental Engineering,Lodz University of Technology, Lodz, Poland;

    Department of Chemical Engineering, Faculty of Process and Environmental Engineering,Lodz University of Technology, Lodz, Poland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Porous media; Capillary model; Elution;

    机译:多孔介质毛细管模型洗脱液;

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