2-유체 모델의 고유치에 근거한 기포류에서의 계면압력도약항

Mechanistic Pressure Jump Terms based on the System Eigenvalues of Two-Fluid Model for Bubbly Flow

  • 정문선 (한국원자력연구소 열수력안전연구팀) ;
  • 이원재 (한국원자력연구소 열수력안전연구팀) ;
  • 이성재 (한국원자력연구소 열수력안전연구팀) ;
  • 송철화 (한국원자력연구소 열수력안전연구팀) ;
  • 하귀석 (한국원자력연구소 열수력안전연구팀)
  • 발행 : 2001.06.27

초록

Interfacial pressure jump terms based on the physics of phasic interface and bubble dynamics are introduced into the momentum equations of the two-fluid model for bubbly flow. The pressure discontinuity across the phasic interface due to the surface tension force is expressed as the function of fluid bulk moduli and bubble radius. The consequence is that we obtain from the system of equations the real eigenvalues representing the void-fraction propagation speed and the pressure wave speed in terms of the bubble diameter. Inversely, we obtain an analytic closure relation for the radius of bubbles in the bubbly flow by using the kinematic wave speed given empirically in the literature. It is remarkable to see that the present mechanistic model using this practical bubble radius can indeed represent both the mathematical well-posedness and the physical wave speeds in the bubbly flow.

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