首页> 外文会议>ANS proceeding of 1997 national heat transfer conference : Technical sessions >ONE-GROUP INTERFACIAL AREA TRANSPORT IN VERTICAL AIR-WATER BUBBLY FLOW
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ONE-GROUP INTERFACIAL AREA TRANSPORT IN VERTICAL AIR-WATER BUBBLY FLOW

机译:垂直空气气泡流中的一区界面传输

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摘要

In the two-fluid model for two-phase flows, interfacial area concentration is one of the most important closure relations that should be obtained from careful mechanistic modeling. The objective of this study is to develop a one-group interfacial area transport equation together with the modeling of the source and sink terms due to bubble breakage and coalescence. For bubble coalescence, two mechanisms are considered to be dominant in vertical two-phase bubbly flow. These are the random collisions between bubbles due to turbulence in the flow field, and the wake entrainment process due to the relative motion of the bubbles in the wake region of a seeding bubble. For bubble breakup, the impact of turbulent eddies is considered. These phenomena are modeled individually, resulting in a one-group interfacial area concentration transport equation with certain parameters to be determined from experimental data. Compared to the measured axial distribution of the interfacial area concentration under various flow conditions, these parameters are obtained for the reduced one-group, one-dimensional transport equation. The results indicate that the proposed models for bubble breakup and coalescence are appropriate.
机译:在两相流的双流体模型中,界面面积浓度是应该通过仔细的机械建模获得的最重要的闭合关系之一。这项研究的目的是建立一个单界面面积传输方程,以及由于气泡破裂和聚结而引起的源和汇项的建模。对于气泡聚结,在垂直的两相气泡流中,两种机理被认为是主要的。这些是由于流场中的湍流引起的气泡之间的随机碰撞,以及由于在播种气泡的尾流区域中的气泡的相对运动而引起的尾流夹带过程。对于气泡破裂,考虑了涡流的影响。对这些现象进行单独建模,得出具有某些参数的一组界面面积浓度输运方程,该方程将从实验数据中确定。与在各种流动条件下测得的界面面积浓度的轴向分布相比,这些参数是针对简化的一维一维输运方程获得的。结果表明,所提出的气泡破裂和聚结模型是合适的。

著录项

  • 来源
  • 会议地点 Baltimore MD(US);Baltimore MD(US)
  • 作者

    Q. Wu; S. Kim; M. Ishii; S.G. Beus;

  • 作者单位

    Thermal Hydraulics and Reactor Safety Laboratory Purdue University West Lafayette, IN 47907, U.S.A. (765) 494-5759;

    Thermal Hydraulics and Reactor Safety Laboratory Purdue University West Lafayette, IN 47907, U.S.A. (765) 494-5759;

    Thermal Hydraulics and Reactor Safety Laboratory Purdue University West Lafayette, IN 47907, U.S.A. (765) 494-5759;

    Bettis Atomic Power Lab. Westinghouse Electric Corporation Box 79. West Mifflin, PA 15122, USA. (412)476-6430;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 传热学;
  • 关键词

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