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Numerical Simulation for Induction Refining Process of Metallurgical-Grade Silicon in Vacuum Furnace

Numerical Simulation for Induction Refining Process of Metallurgical-Grade Silicon in Vacuum Furnace
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摘要 The temperature and velocity distribution of melting pool fields is very important effect to the silicon purification in vacuum induction furnace.A numerical model for the electromagnetic-thermal-hydrodynamic coupling fields have been developed by using the finite element method(FEM)and a 2D numerical simulation for electromagnetic、 temperature and velocity fields of metallurgical-grade silicon melting in vacuum induction furnace were performed with a software Multi-physics Comsol 3.5a in this paper.The results showed that the temperature field was dependent observably on input power of coils and induction heating times and the maximum temperature gradient in melting pool was 215K in holding time.With the silicon molted gradually a clockwise vortex was come into being for electromagnetic stirring in the smelting poor.The variation of velocity field in melting silicon is mainly influenced with the change of the current intensity and power frequency.The numerical predications of temperature distribution are in good agreement with experiments. The temperature and velocity distribution of melting pool fields is very important effect to the silicon purification in vacuum induction furnace.A numerical model for the electromagnetic-thermal-hydrodynamic coupling fields have been developed by using the finite element method(FEM)and a 2D numerical simulation for electromagnetic、 temperature and velocity fields of metallurgical-grade silicon melting in vacuum induction furnace were performed with a software Multi-physics Comsol 3.5a in this paper.The results showed that the temperature field was dependent observably on input power of coils and induction heating times and the maximum temperature gradient in melting pool was 215K in holding time.With the silicon molted gradually a clockwise vortex was come into being for electromagnetic stirring in the smelting poor.The variation of velocity field in melting silicon is mainly influenced with the change of the current intensity and power frequency.The numerical predications of temperature distribution are in good agreement with experiments.
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2012年第S1期77-81,共5页
基金 Item Sponsored by the NSFC project (51066003 u1137601) National science & technology support plan project (2011BAE03B01) Scientific Research Foundation Project (2010Y408) of Yunnan Province Education Department
关键词 metallurgical-grade silicon vacuum induction refining multi-fields coupling numerical simulation metallurgical-grade silicon vacuum induction refining multi-fields coupling numerical simulation
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参考文献6

  • 1Bo Yun Jang,Joon Soo Kim,Young Soo Ahn.Induction melting process using segmented graphite crucible for silicon melting[J].Solar Energy Materials and Solar Cells.2010(1)
  • 2Kuixian Wei,Wenhui Ma,Bin Yang,Dachun Liu,Yongnian Dai,Kazuki Morita.Study on volatilization rate of silicon in multicrystalline silicon preparation from metallurgical grade silicon[J].Vacuum.2010(7)
  • 3Frédéric Mercier,Jean-Marc Dedulle,Didier Chaussende,Michel Pons.Coupled heat transfer and fluid dynamics modeling of high-temperature SiC solution growth[J].Journal of Crystal Growth.2009(2)
  • 4A. Bermúdez,D. Gómez,M.C. Mu?iz,P. Salgado,R. Vázquez.Numerical simulation of a thermo-electromagneto-hydrodynamic problem in an induction heating furnace[J].Applied Numerical Mathematics.2008(9)
  • 5K. Sadeghipour,J.A. Dopkin,K. Li.A computer aided finite element/experimental analysis of induction heating process of steel[J].Computers in Industry.1996(3)
  • 6LV Guoqiang,MA Wenhui,WANG Hua et al.Numerical simulationof a electromagnetic-thermal coupling in vacuum induction furnace for metallurgical grade silicon refining process[].CneuHajibHblH BbinYCK.2011

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