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A bounded upwind-downwind semi-discrete scheme for finite volume methods for phase separation problems

机译:有限体积方法解决相分离问题的有界迎风-顺风半离散方案

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摘要

Phase separation processes play a key role in many industrial applications. For instance, the oil industry is full of examples of surface installations devoted to separate water from oil just after the extracted mixture leaves the well. Phase separation problems pose many challenges to numerical schemes due to the presence of shock and rarefaction waves, typical of hyperbolic problems. Moreover, the transported variables, usually the fractions of each of the phases present in the mixture, have the additional important feature of being bounded, for only fractions between 0 and 1 have physical meaning. The numerical schemes should be able to deal with this restriction, avoiding unrealistic, non-physical fraction values. A novel semi-discrete scheme for the disperse phase equation of the standard drift-flux model as implemented in a finite volume formulation is presented. The scheme results from combining an upwind interpolation based on the drift direction for the transported variable of the drift-flux term, a seldom used downwind interpolation based on the same direction for evaluating the drift velocity, and an upwind interpolation based on the mixture velocity for the transported variable of the convective term. The scheme is mathematically proven to ensure boundedness of the solution, and is simpler than existing successful but more elaborate approaches, although generally not that accurate. The scheme is tested in one-dimensional and multidimensional separation problems, whose results confirm the good behavior predicted by the mathematical analysis.
机译:相分离过程在许多工业应用中起着关键作用。例如,石油工业到处都是地面设备的实例,这些设备专门用于在提取的混合物离开井后立即将油中的水与油分离。由于存在冲击波和稀疏波,这是双曲线问题的典型特征,相分离问题对数值方案提出了许多挑战。此外,所输送的变量,通常是混合物中存在的每个相的分数,具有被限制的另一个重要特征,因为只有0-1之间的分数才具有物理意义。数值方案应该能够处理此限制,避免出现不切实际,非物理的分数值。提出了一种新的半离散方案,用于有限体积公式中的标准漂移-通量模型的分散相方程。该方案的结果是将基于漂移方向的上风插值与漂移通量项的传递变量进行组合,很少使用基于相同方向的下风插值来评估漂移速度,以及基于混合速度的上风插值,用于对流项的传递变量。该方案在数学上得到了证明,可以确保解决方案的局限性,并且比现有成功但更复杂的方法更简单,尽管通常不那么准确。该方案在一维和多维分离问题中进行了测试,其结果证实了数学分析所预测的良好行为。

著录项

  • 来源
    《Applied Mathematical Modelling》 |2017年第10期|118-134|共17页
  • 作者单位

    Instituto de Tecnologia, Universidad Argentina de la Empresa - UADE, Lima 717, Buenos Aires C1073AAO, Argentina;

    Instituto de Tecnologia, Universidad Argentina de la Empresa - UADE, Lima 717, Buenos Aires C1073AAO, Argentina,Candoit Ingenieria y Tecnologia, Buenos Aires, Argentina;

    Instituto de Tecnologia, Universidad Argentina de la Empresa - UADE, Lima 717, Buenos Aires C1073AAO, Argentina;

  • 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

    Downwind; Drift-flux; Bounded scheme; Finite volume; Separation process;

    机译:顺风;漂流有界计划;有限的体积;分离过程;

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