首页> 外文期刊>International Journal of Heat and Mass Transfer >Comparison of local interfacial characteristics between vertical upward and downward two-phase flows using a four-sensor optical probe
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Comparison of local interfacial characteristics between vertical upward and downward two-phase flows using a four-sensor optical probe

机译:使用四传感器光学探头比较垂直向上和向下两相流之间的局部界面特性

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摘要

To model the interfacial transfer terms more accurately in two-fluid model as well as to further comprehend the intrinsic mechanism for downward two-phase flows, more information that involves local interfacial parameters is required. The local interfacial characteristics in upward and downward bubbly flows were investigated separately in a 50.8 mm inner-diameter round pipe. A four-sensor optical probe was used in the measurement of local interfacial parameters, including void fraction, interfacial area concentration (IAC), bubble frequency, interfacial velocity and Sauter mean diameter. The radial profiles of these parameters in downward flows were presented and compared with that in upward flows. In general, the void fraction shows a core-peaked distribution for the downward flow at low void fraction, but shows a wall-peaked distribution for the upward flow; while at high void fraction, it has an off-center-peaked distribution for the downward flow but a core-peaked distribution for the upward flow. Also, under relative high void fraction conditions, the profile of Sauter mean diameter presents a pronounced maximum in the channel center for the upward flow whereas near the channel wall for the downward flow. Additionally, with an increase in the gas flow rate, the flat profiles of interfacial velocity transform to power-law shapes in the upward flows but to that with the velocity increasing along the radius for the downward flows.
机译:为了在两流体模型中更准确地建模界面转移项,并进一步理解向下两相流的内在机理,需要更多涉及局部界面参数的信息。在50.8 mm内径圆管中分别研究了气泡向上和向下流动的局部界面特性。四传感器光学探头用于测量局部界面参数,包括空隙率,界面面积浓度(IAC),气泡频率,界面速度和Sauter平均直径。给出了这些参数在向下流动中的径向轮廓,并与向上流动中的径向轮廓进行了比较。通常,空隙率在低空隙率时显示出向下流动的核峰分布,但显示出上升流的壁峰分布。而在高空隙率时,其向下流动具有偏心峰分布,而对于向上流动具有中心峰分布。同样,在相对较高的空隙率条件下,索特平均直径的轮廓在向上流动的通道中心呈现明显的最大值,而在向下流动的通道壁附近呈现明显的最大值。另外,随着气体流速的增加,界面速度的平面轮廓在向上的流动中转换为幂律形状,但是随着速度沿半径的增加而向下流动。

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  • 来源
    《International Journal of Heat and Mass Transfer》 |2014年第10期|1183-1196|共14页
  • 作者单位

    Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, No. 145, Nantong Street, Nangang District, Harbin 150001, China;

    Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, No. 145, Nantong Street, Nangang District, Harbin 150001, China;

    State Key Laboratory of Hydraulics and Mountain River Engineering, College of Water Resource & Hydropower, Sichuan University, Chengdu 610065, China;

    Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, No. 145, Nantong Street, Nangang District, Harbin 150001, China;

    Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, Harbin Engineering University, No. 145, Nantong Street, Nangang District, Harbin 150001, China;

  • 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

    Four-sensor optical probe; Void fraction; Interfacial area concentration; Two-fluid model; Downward two-phase flow;

    机译:四传感器光学探头;空隙率;界面浓度二流体模型;向下两相流;

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