ISSN (print) 1995-2732
ISSN (online) 2412-9003

 

download

Abstract

Mathematical model of hydrodynamics and heat transfer of steel liquid melt is presented in this article. The main improvement of the model is the compressibility accounting of examined gas-liquid ambient. Visualization of the results obtained in C++ language in programs, realized according to this model, is presented.

Keywords

Gas-liquid ambient, hydrodynamics, heat transfer, mathematical modeling, arc heating.

Kabakov Daniel Uriyovich – a postgraduate student, Applied Mathematics department, Dniprodzerzhynsk State Technical University, Ukraine. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..

Samokhvalov Sergiy Evgenovich – D.Sc. (Eng.), professor, Head of Applied Mathematics department, Dniprodzerzhynsk State Technical University, Ukraine. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..

Piptyk Vitaliy Petrovich – PhD (Eng.), senior research fellow, Physical Technical Problems of Steel Metallurgy department, Institute of Ferrous Metallurgy, National Academy of Sciences, Ukraine. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..

Filatova Olga Anatoljevna – PhD (Eng.), assistant professor, Applied Mechanics and Graphics department, Nosov Magnito-gorsk State Technical University. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..

1. Samokhvalov S. Thermophysical processes in multiphase: theoretical basis of computer modeling. Dniprodzerzhynsk: DSTU, 1994. 174 p.

2. Kabakov D. Mathematical Model of conjugate hydrodynamic and heat transfer processes in the ladle while it is blowing with different amount of gas. Journal of the Sevastopol. Series: Mechanics, Power Engineering, Ecology. Sevastopol, 2012, no. 133, рp. 118-121.

3. Kabakov D., Samokhvalov S. Conjugate heat transfer and hydrodynamic processes in the ladle while it is filling. System Technologies. Dnipropetrovsk, 2012, no. 2 (79). pp. 146-151.

4. Kabakov D., Piptyk V., Logozinsky I., Chycherin A. Mathematical model of conjugate hydrodynamic and heat transfer processes in the forge ladle with impact wall zone. Bulletin Kherson National Technical University. Kherson, 2012, no. 2 (45), pp. 160-165.

5. Piptyk V., Polyakov V., Logozinsky I. and others. Basic data for numerical studies of hydrodynamics of the bath on ladle furnace with AC different power. Collection of scientific papers of Institute of Ferrous Metallurgy of National academy of sciences of Ukraine «Fundamental and applied problems of ferrous metallurgy», 2007, no. 14, pp. 145-153.

6. Agapitov E.В. Power savings at plasma ladle-furnace to processing steels. Vestnik Magnitogorskogo gosudarstvennogo tehnicheskogo universiteta im. G.I. Nosova. [Vestnik of Nosov Magnitogorsk State Technical University]. 2011, no. 4, pp. 92-95.