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Interfacial Area Transport in Horizontal Bubbly Flow with 90-deg Elbow

机译:90度弯头在水平气泡流中的界面区域传输

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摘要

The present study develops an interfacial area transport equation applicable to an air-water horizontal bubbly flow with a flow restriction. The experiments are performed in a round glass pipe of 50.3-mm inner diameter, along which a 90-deg elbow is installed at L/D = 206.6 from the two-phase mixture inlet. In total, 15 different flow conditions in the bubbly flow regime are studied. The detailed local two-phase flow parameters are acquired by a double-sensor conductivity probe at four different axial locations. The effect of the elbow is evident in the distribution of local parameters as well as in the development of interfacial structures. The elbow clearly promotes bubble interactions resulting in significant changes in both the void fraction and interfacial area concentration. In the present study, the elbow is found to promote the coalescence mechanism while re-rnducing the disintegration mechanism. These geometric effects are also reflected in the axial development of one-dimensional two-phase flow parameters. In the present analysis, the interfacial area transport equation is developed in one-dimensional form via area-averaging based on the existing model for vertical flow. In the averaging process, characteristic nonuniform distributions of the two-phase flow parameters in horizontal two-phase flow are treated mathematically by covariance calculations. Furthermore, the change in pressure due to the minor loss of the elbow is taken into consideration by using a newly developed correlation analogous to Lockhart and Martinelli 's. In total, 60 area-averaged data points are employed to benchmark the present model. The present model predicts the data well with an average percent difference of approximately ±10%.
机译:本研究提出了适用于带流量限制的空气-水水平气泡流的界面面积传输方程。实验在内径为50.3毫米的圆形玻璃管中进行,沿着该管从两相混合物入口以L / D = 206.6的角度安装了90度弯头。总共研究了气泡流态中的15种不同的流动条件。通过双传感器电导率探头在四个不同的轴向位置获取详细的局部两相流参数。在局部参数的分布以及界面结构的发展中,肘部的作用是显而易见的。肘部明显促进气泡相互作用,从而导致空隙率和界面面积浓度的显着变化。在本研究中,发现肘部促进了聚结机制,同时又减少了崩解机制。这些几何效应也反映在一维两相流参数的轴向发展中。在目前的分析中,在现有垂直流模型的基础上,通过面积平均以一维形式开发了界面面积传输方程。在平均过程中,通过协方差计算对水平两相流中两相流参数的特征非均匀分布进行数学处理。此外,通过使用新开发的与洛克哈特和马丁内利相似的相关性,可以考虑由于肘部轻微丢失而引起的压力变化。总共使用60个区域平均数据点对本模型进行基准测试。本模型可以很好地预测数据,平均百分比差约为±10%。

著录项

  • 来源
    《Nuclear Technology》 |2009年第1期|20-28|共9页
  • 作者单位

    The Pennsylvania State University Department of Mechanical and Nuclear Engineering University Park, Pennsylvania 16802;

    University of Missouri-Rolla Mining and Nuclear Engineering Department, Rolla, Missouri 65401;

    University of Wisconsin-Milwaukee Department of Mechanical Engineering, Milwaukee, Wisconsin 53201;

  • 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

    horizontal bubbly flow; interfacial area transport; geometric effects;

    机译:水平气泡流界面区域运输;几何效果;
  • 入库时间 2022-08-18 00:44:14

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