• Title of article

    Influence of thermophysical properties on pool boiling heat transfer of refrigerants

  • Author/Authors

    Gorenflo، نويسنده , , Dieter and Chandra، نويسنده , , Untung and Kotthoff، نويسنده , , Stephan and Luke، نويسنده , , Andrea، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    11
  • From page
    492
  • To page
    502
  • Abstract
    The correct prediction of the heat transfer performance of the boiling liquid within the evaporator of a refrigeration unit is one of the essential features for the successful operation of the whole unit. A theoretically consistent calculation method for the heat transfer coefficient α in nucleate boiling, which should be based on the physical phenomena connected with vapour bubbles growing, departing and sliding on the wall and with the interactions of bubbles and of neighbouring nucleation sites within the microstructure of the heating surface, does not yet exist, despite the increasing number of papers on the subject in the recent past. Instead, the predictive methods for α available at present are empirical or semiempirical, especially for heat transfer conditions relevant in practice. Many of these correlations have been established in the form of power laws in which the relative influences of the main groups of variables on α are treated by separate factors. One of these may stand for the influence of the thermophysical properties of the boiling liquid or these properties will be included in several of the factors. perimental results are presented for pool boiling heat transfer from a single horizontal copper tube (8 mm OD) to HFC-refrigerants (R32, 125, 134a, 143a, 152a, 227ea) and hydrocarbons (propane, i-butane). The results are compared to experimental data from the literature, and methods are discussed, how to incorporate the data in semiempirical correlations to describe the influence of the thermophysical properties of the fluids on the heat transfer performance.
  • Keywords
    Pool boiling , R32 , Physical property , R134a , R134a , R125 , R227ea , R32 , R152a , R143a , R152a , R227ea , Système frigorifique , Evaporateur , Ebullition libre , Propriété thermodynamique , Thermodynamic property , R125 , Evaporator , Transfert de chaleur , Refrigerating system , Propriété physique , heat transfer , R143a
  • Journal title
    International Journal of Refrigeration
  • Serial Year
    2004
  • Journal title
    International Journal of Refrigeration
  • Record number

    1339704