Experimental comparison of flow pattern detection techniques for air-water mixture flow

被引:35
|
作者
Keska, JK
Williams, BE
机构
[1] St Martins Coll, Dept Engn Mech, Tumwater, WA 98501 USA
[2] St Martins Coll, Dept Engn Mech, Rainier, WA 98576 USA
关键词
void fraction; concentration; two-phase flow; heterogeneous mixture; statistical analysis; probability distribution function; flow pattern; capacitive; resistive; pressure; optical sensor; computer-aided system; fluctuation; random fluctuation; detection system; experimental system; concomitant method; experimental data; air-water mixture;
D O I
10.1016/S0894-1777(98)10046-8
中图分类号
O414.1 [热力学];
学科分类号
摘要
The complicated and complex nature of two-phase mixture flow phenomenon itself requires detection, monitoring and description of flow pattern influence on the dynamic parameters of mixture flow. The experimental research documentation and control of real mixture flow requires detection, monitoring and measurement of many parameters associated with concentration, velocity and pressure with their distributions in time and space. In addition to the complexity of two-phase mixture flow, there is difficulty in comparing results of experiments from different publications due to the limitation in documentation in the used measurement techniques as well as experimental methodologies. Four often-used measurement methods for flow pattern detection were identified, developed and implemented in the constructed vertical experimental system. This computer-aided experimental system (CAES) was used to generate all typical flow patterns in vertical flow and measure all chosen dynamic parameters (concentration, pressure, and interfacial phenomenon) simultaneously. In this CAES the flow pattern detection system is composed of the application of two different electromagnetic methods (capacitive and resistive), pressure fluctuation method and an optical method. In the reported experimental research on vertical adiabatic air-water flow, results were obtained using all four chosen measurement methods simultaneously. The results allowed a direct comparison of the efficiency of each method in terms of individual ability and sensitivity in the detection of flow patterns. The different sensitivity and abilities of individual methods to detect flow patterns were documented and discussed. (C) 1999 Elsevier Science Inc. All rights reserved.
引用
收藏
页码:1 / 12
页数:12
相关论文
共 50 条
  • [41] Adiabatic vertical downward air-water flow pattern map: Influence of inlet device, flow development length and hysteresis effects
    Milan, Marco
    Borhani, Navid
    Thome, John Richard
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2013, 56 : 126 - 137
  • [42] Experimental study on cooling of solar collectors using air-water mixture
    Panthalookaran, Varghese
    George, Jino P.
    PROCEEDINGS OF THE 4TH INTERNATIONAL CONFERENCE ON SOLAR HEATING AND COOLING FOR BUILDINGS AND INDUSTRY (SHC 2015), 2016, 91 : 303 - 311
  • [43] A new type of flow structure in cocurrent adiabatic vertically downward air-water flow: Membrane flow
    Milan, Marco
    Borhani, Navid
    Thome, John Richard
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2014, 58 : 246 - 256
  • [44] Uncertainty analysis for multiphase flow: A case study for horizontal air-water flow experiments
    da Silva, Felipe Jaloretto
    da Silva, Guilherme Goncalves
    Biazussi, Jorge Luiz
    de Castro, Marcelo Souza
    FLOW MEASUREMENT AND INSTRUMENTATION, 2021, 80
  • [45] Experimental Investigation on the Perturbation Length for Air-Water Flow Upstream and Downstream of U-Bends
    Ma, Xiaoxu
    Liu, Taicheng
    Dai, Nan
    Tian, Maocheng
    Li, Shijie
    FRONTIERS IN ENERGY RESEARCH, 2022, 10
  • [46] Experimental study of the effect of wettability on the relative permeability for air-water flow through porous media
    Beltran, Alberto
    Hernandez-Diaz, Dante
    Chavez, Oscar
    Garcia, Armando
    Mena, Baltasar
    Zenit, Roberto
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2019, 120
  • [47] Wettability effect on the flow pattern of air-water two-phase flows in a vertical circular pipe
    Terauchi, K
    Iguchi, M
    Kosaka, H
    Yokoya, S
    Hara, S
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1999, 85 (09): : 645 - 651
  • [48] Characterization of horizontal air-water two-phase flow
    Kong, Ran
    Kim, Seungjin
    NUCLEAR ENGINEERING AND DESIGN, 2017, 312 : 266 - 276
  • [49] Pressure wave propagation in air-water bubbly and slug flow
    Huang, F
    Takahashi, M
    Gu, LJ
    PROGRESS IN NUCLEAR ENERGY, 2005, 47 (1-4) : 648 - 655
  • [50] Local liquid velocity measurements in air-water bubbly flow
    X. Sun
    S. Kim
    T. Smith
    M. Ishii
    Experiments in Fluids, 2002, 33 : 653 - 662