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CFD Simulation of Phase Distribution in Adiabatic Upward Bubbly Flows Using Interfacial Area Transport Equation

机译:绝热上升气泡流相分布的CFD模拟。

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摘要

In the study of gas-liquid two-phase flows, one challenge is to describe the dynamic changes in flow structure, which can be considerably affected by bubble coalescence and/or disintegration in addition to bubble nucleation and condensation processes. The interfacial structure, to a first-order approximation, may be characterized by the void fraction and a geometric parameter named "interfacial area concentration," the evolution of which can be modeled by an interfacial area transport equation (IATE). A one-group IATE has been developed for bubbly flows in the literature, accounting for three dominant mechanisms: coalescence of bubbles due to random bubble collisions driven by turbulence, coales-rncence of bubbles due to wake entrainment, and disintegration of bubbles caused by turbulent-eddy impact. The current study is aimed at examining the capability of a computational fluid dynamics code, namely, FLUENT, with the one-group IATE implemented, in predicting two-phase-flow phase distributions. Simulations using the Eu-lerian multiphase model in FLUENT 6.2.16 have been performed for adiabatic upward bubbly flows in a pipe of 50.8-mm inner diameter with a range of void fractions from 4.9 to 23.1 %.The predicted phase distributions yield satisfactory agreement with available experimental data, demonstrating that FLUENT with the IATE can provide a valuable simulation tool for two-phase bubbly flows.
机译:在气液两相流的研究中,面临的一个挑战是描述流结构的动态变化,除了气泡成核和冷凝过程外,气泡的聚结和/或崩解还会大大影响其动态变化。界面结构可以近似为一阶近似,其特征在于空隙率和称为“界面面积浓度”的几何参数,其演化可以通过界面面积传输方程(IATE)进行建模。文献中已经为气泡流建立了一个IATE,解释了三种主要机制:由湍流驱动的随机气泡碰撞导致的气泡聚结,由于尾流夹带引起的气泡聚结和由湍流引起的气泡崩解。 -涡流的影响。当前的研究旨在检验一种计算流体力学代码(即FLUENT)的性能,该代码已实施了一组IATE,可以预测两相流相分布。在FLUENT 6.2.16中使用Eu-lerian多相模型进行了模拟,对内径为50.8 mm,空隙率范围为4.9%至23.1%的管道中的绝热向上气泡流进行了预测,预测的相态分布与现有的实验数据,表明FATE与IATE可以为两相气泡流提供有价值的仿真工具。

著录项

  • 来源
    《Nuclear Technology》 |2009年第1期|71-82|共12页
  • 作者

    Xia Wang; Xiaodong Sun;

  • 作者单位

    The Ohio State University Department of Mechanical Engineering, Nuclear Engineering Program 201 West 19th Avenue, Columbus, Ohio 43210;

    The Ohio State University Department of Mechanical Engineering, Nuclear Engineering Program 201 West 19th Avenue, Columbus, Ohio 43210;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bubbly flow; interfacial area concentration; two-phase flow;

    机译:气泡流界面浓度两相流;
  • 入库时间 2022-08-18 00:44:13

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