Phenomenological Liquid Film Dryout Model for Upward Flow in Tubes and Annuli

원형 및 환상 채널에 흐르는 수직 상향류의 액막 건조 모델

  • 홍성덕 (한국원자력연구소 열수력안전연구팀) ;
  • 천세영 (한국원자력연구소 열수력안전연구팀)
  • Published : 2001.06.27

Abstract

We modeled the liquid film dryout(LFD) process for both tube and annulus which have uniformly heated vertical channels. We set phenomenological initial conditions in the model. The initial void fraction on the onset of the annular flow location is derived from the physical chum-to-annular flow criterion with the help of the drift-flux-model. The initial thermodynamic-equilibrium-quality is calculated by iteration with the flow quality to find the onset of the annular-flow location. Present model tends to predict very well at the lower exit quality but under-estimates at the higher exit quality. We found that the prediction error of the present model is gradually bigger as the inlet subcooling approaches near the saturation. We obtained excellent results for both tube and annulus channels as the mean of 0.97 and root-mean-square error of 11% for the number of 3883 experimental data on tubes, and of 0.96 and of 12% for 593 on annuli. The present model extended the applicable range to the relatively low exit quality region than previous LFD models.

Keywords