Analysis of free surface motions in the hoot Pool of KALIMER

KALIMER 고온풀 자유액면 거동 해석

  • 김성오 (한국원자력연구소 칼리머기술개발팀) ;
  • 어재혁 (한국원자력연구소 칼리머기술개발팀) ;
  • 최훈기 (창원대학교 기계공학과)
  • Published : 2002.09.01

Abstract

An analytic methodology was developed for free surface motions between liquid metal coolant and cover gas in order to calculate the phenomena of gas entrainment in hot pool surface through IHX EMP and reactor core. The methodology was setup by applying the first order VOF convection model to CFX4 general purpose fluid dynamics analysis code. The methodology was validated by applying it to an experimental apparatus designed for free surface motions of KALIMER reactor. The distributions of free surface calculated by the present methodology were almost coincident with the experimental data. The developed methodology was applied to the KALIMER reactor of full power operating condition. The shapes of the free surface were nearly uniform. From the results, it was found that the altitude of the free surface from the IHX inlet nozzle of KALIMER reactor is high enough not to affect to free surface motions of generating gas bubbles from the turbulent shear flows such as hydraulic jump and water falls.

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References

  1. Akalank K. Jain et al., 'Vortex formatioat vertical pipe intakes,' J, of hydraulics divisiton 14104, (1978)
  2. Hubert Chanson, 'Air bubble entrainment in free surface turbulent shear flows,' Academic press, (1996)
  3. AEA Technology, CFX-4 ManuaI, (1997)
  4. Seong-O. Kim et al., 'A first-order volume of fluid convection model in three dimensional space,' Int. J. for Meth Fluids, Vo1.36, (2001), pp.185-204
  5. Min-Joon Kim et al., 'A spectral methodfor free surface flows of inviscid fluids,'Int. J. for Meth FIuids, Vo1.28, (1998), pp.887-902
  6. C.W. Hirt and B.D. Nichols, 'Volume of Fluid(VOF) methods for the dynamics of free boundaries,' J. of Comput. Phys., Vo1.39, (1981), pp.201-225
  7. 남호윤 등, '상부플레넘 액면요동 물모의 실험.' LMR/ST153-TD-01Rev.0/01(STI530000), 한국원자력연구소, (2002)
  8. KALIMER 개념설계 보고서, KAERI/TR-2204, (2002)
  9. J.P. Holman, Heat Transfer, International student edition, (1981)
  10. 김성오, '핵연료 재장전 운전모드시 원자로헤드 온도분포 계산 보고서,' LMR/FS200-ER-05/01, (2002)