Transient Heat Transfer for the Evaporators of Capillary Pumped Loop at Intial Startup

초기시동 시의 모세펌핑 루프 증발기에 대한 과도열전달 해석

  • 박병규 (한국기계연구원 열유체환경연구부) ;
  • 김근오 (한국기계연구원 열유체환경연구부) ;
  • 김무근 (인제대학교 기계자동차공학부)
  • Published : 2001.06.27

Abstract

It is derived for the temperature profile in a cylindrical and planar shape capillary pumped loop evaporators subject to a uniform heat flux prior to the initiation of boiling using the finite difference method. The results of the analysis allow for the determination of applied power levels for which nucleation is likely to occur only within the vapor grooves of the evaporator while maintaining subcooling in the liquid core, thereby increasing the likelihood of a successful startup. Also, limits are found for which additional increases in the applied heat flux do not increase the temperature difference between the vapor grooves and the wick-liquid core interface. Several advantages of larger diameter evaporators observed experimentally in startup are explained and quantified by the model. This analysis is appropriate for standard capillary pumped loop evaporators during a fully-flooded startup as well as starter pump designs and loop heat pipes.

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