• Title of article

    Characterization of diabatic two-phase flows in microchannels: Flow parameter results for R-134a in a 0.5 mm channel

  • Author/Authors

    Revellin، نويسنده , , Rémi and Dupont، نويسنده , , Vincent and Ursenbacher، نويسنده , , Thierry and Thome، نويسنده , , John R. and Zun، نويسنده , , Iztok، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    20
  • From page
    755
  • To page
    774
  • Abstract
    An optical measurement method for two-phase flow pattern characterization in microtubes has been utilized to determine the frequency of bubbles generated in a microevaporator, the coalescence rates of these bubbles and their length distribution as well as their mean velocity. The tests were run in a 0.5 mm glass channel using saturated R-134a at 30 °C (7.7 bar). The optical technique uses two laser diodes and photodiodes to measure these parameters and to also identify the flow regimes and their transitions. Four flow patterns (bubbly flow, slug flow, semi-annular flow and annular flow) with their transitions were detected and observed also by high speed video. It was also possible to characterize bubble coalescence rates, which were observed here to be an important phenomena controlling the flow pattern transition in microchannels. Two types of coalescence occurred depending on the presence of small bubbles or not. The two-phase flow pattern transitions observed did not compare well to a leading macroscale flow map for refrigerants nor to a microscale map for air–water flows. Time averaged cross-sectional void fractions were also calculated indirectly from the mean two-phase vapor velocities and compared reasonably well to homogeneous values.
  • Keywords
    two-phase flows , Microchannels , Optical measurement technique , Flow patterns
  • Journal title
    International Journal of Multiphase Flow
  • Serial Year
    2006
  • Journal title
    International Journal of Multiphase Flow
  • Record number

    1409847