Numerical Modeling of Two-Phase Non-Isothermal Turbulent Jet

비등온 난류 제트의 이상유동에 대한 수치모델

  • 황득리엔 (베트남 하노이 농업대학교 기계공학과) ;
  • 김명관 (부경대학교 기계공학과) ;
  • 권오붕 (부경대학교 기계공학부)
  • Published : 2001.06.27

Abstract

Choosing the most suitable mathematical model and relating this to turbulent tangential tensions model are very important in the investigations of turbulent two-phase flow. This paper considers two-fluid scheme. According to it, two phases have their own densities, velocities, and temperatures at any spatial point and at any moment. The equations of motion and heat transfer for each phase are linked with the forces of interaction between two phases. These forces are considered as predominant for the flow. As a closure in the system of motion equations, one modification of $K - {\epsilon}$ turbulent model is worked out. The modification uses two equations for turbulent kinetic energy of the phases and one - for the turbulent energy loss of main phase. This model can be set as a $K_g - K_p -{\epsilon}$ model. The modified model has been tested for both a two-phase non-isothermal flat jet and axially symmetrical jet. The numerical results are compared with the reference data revealing a good agreement between them.

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