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Numerical approaches for moist air condensing flows modelling in the transonic regime

机译:跨音状态下潮湿空气凝结流量模型的数值方法

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摘要

The paper presents mathematical modelling of water vapour condensation process in the moist air transonic internal flows. The condensation model based on the classical theory of nucleation and molecular-kinetic droplet growth model is implemented into a commercial software ANSYS Fluent. Two approaches are shown in the paper, one in which the air with water droplets is treated as a fluid mixture and second where the water droplets and humid air are computed as separate phases. Both models are validated against in-house and literature experimental studies of internal flow in nozzles. The impact of air humidity and contamination on the condensation process in internal flows for different conditions is examined. The latent heat release in the condensation process influences the flow structure, thus the analysis of condensation wave and shock wave position change with the change of relative air humidity is presented. Moreover, the importance of inertia force and the resulting velocity difference between phases is highlighted. The paper shows that the impact of the condensation in transonic flow is non-negligible and should be taken under consideration in high-velocity flow simulations.
机译:本文介绍了潮湿空气肿块内部流动中的水蒸气冷凝工艺的数学建模。基于核心和分子 - 动力学液滴生长模型的经典理论的冷凝模型被实施为商业软件Ansys流畅。本文中示出了两种方法,其中具有水滴的空气被视为流体混合物,并将水滴和潮湿空气被计算为单独的相。两种模型都针对内部内部流动的内部流动的文献实验研究进行了验证。检查了在内部流动中对不同条件的内部流动缩合过程的影响。延伸过程中的潜热释放影响了流动结构,因此提出了随着相对空气湿度的变化的变化的凝结波和冲击波位置的分析。此外,突出了惯性力和所得相位速度差的重要性。本文表明,缩合在跨音流动中的影响是不可忽略的,并且应该在高速流动模拟中考虑。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第12期|120392.1-120392.12|共12页
  • 作者单位

    The Silesian University of Technology The Faculty of Energy and Environmental Engineering Department of Power Engineering and Turbomachinery Akademicka 18 44-100 Cliwice Poland;

    The Silesian University of Technology The Faculty of Energy and Environmental Engineering Department of Power Engineering and Turbomachinery Akademicka 18 44-100 Cliwice Poland;

    Tohoku University Department of Computer and Mathematical Sciences Sendai 980-8579 Japan;

    Karlsruhe Institute of Technology (KIT) Institute of Fluid Machinery Karlsruhe 76131 Germany;

  • 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

    Computational fluid dynamics; Humid air; Condensation; Transonic flow; Losses;

    机译:计算流体动力学;潮湿的空气;缩合;横向流动;亏损;

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