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A Numerical Study of Turbulent Flow, Heat Transfer, and Solidification in Twin-Roil Continuous Casting

쌍롤 연속 주조에서의 난류 유동, 온도 및 응고 예측을 위한 연구

  • Received : 1997.09.12
  • Published : 1999.01.01

Abstract

A computer program has been developed for analyzing the two-dimensional, unsteady conservation equations for transport phenomena in the molten region of twin-roll continuous casting in order to predict the turbulent velocity, temperature fields, and solidification process of the molten steel. The energy equation of the cooling roll is solved simultaneously with the conservation equations of molten steel in order to consider heat transfer through the cooling roll. The results show the velocity, temperature and solidification pattern in the molten region with roll temperature as a function of time. The results for velocity and temperature fields with solidification are compared with those without solidification, giving different thermofluid characteristics in the molten region. We also investigated the effects of revolutional speed of roll, superheat and nozzle geometry on the turbulent flow, temperature and solidification in the molten steel and temperature fields in the cooling roll.

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Acknowledgement

Supported by : 교육부