• Title of article

    IR measurements of the thermodynamic effects in cavitating flow

  • Author/Authors

    Petkov?ek، نويسنده , , Martin and Dular، نويسنده , , Matev?، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    8
  • From page
    756
  • To page
    763
  • Abstract
    The understanding of the thermodynamic effects of cavitating flow is crucial for applications like turbopumps for liquid hydrogen LH2 and oxygen LOx in space launcher engines. Experimental studies of this phenomenon are rare as most of them were performed in the 1960s and 1970s. The present study presents time resolved IR (Infra-Red) measurements of thermodynamic effects of cavitating flow in a Venturi nozzle. ped cavitating flow of hot water (95 °C) was observed at different operating conditions – both conventional high speed visualization and high speed IR thermography were used to evaluate the flow parameters. he mean features of the temperature distributions and the dynamics of the temperature field were investigated. As a result of evaporation and consequent latent heat flow in the vicinity of the throat a temperature depression of approximately 0.4 K was measured. In the region of pressure recuperation, where the cavitation structures collapse, the temperature rise of up to 1.4 K was recorded. It was found that the temperature dynamics closely follows the dynamics of cavitation structures. y experimental results were compared against a simple model based on the Rayleigh–Plesset equation and the thermal delay theory and plausible agreement was achieved. mental data is most valuable for further development of numerical models which are, due to poor ensemble of existing experimental results, still at a very rudimentary level.
  • Keywords
    Cavitation , Thermodynamic effects , Thermal delay , Venturi channel , Hot water
  • Journal title
    International Journal of Heat and Fluid Flow
  • Serial Year
    2013
  • Journal title
    International Journal of Heat and Fluid Flow
  • Record number

    2382294