Numerical Simulation of the Propagation of Tungsten Vapor above a Heated Surface

The article presents numerical simulation results for the problem of tungsten vapor propagation after its evaporating from a surface heated with a high-speed electron beam. The model is based on solving the system of gas dynamics equations written in divergence form. The resulting system of equations is implemented via the Belotserkovskii large-particle method. The density and vapor temperature distributions are obtained for a surface heated up to a temperature of 8000 K. Calculations show that the normal temperature distribution on the specimen surface results in a noticeably spherical shape of the gas exit front.

Authors
Lazareva G.G. 1, 2 , Maksimova A.G.2, 3
Publisher
Pleiades journals
Number of issue
3
Language
English
Pages
472-480
Status
Published
Volume
16
Year
2022
Organizations
  • 1 RUDN University
  • 2 Novosibirsk State University
  • 3 Institute of Computational Mathematics and Mathematical Geophysics, Siberian Branch, Russian Academy of Sciences
Keywords
mathematical modeling; gas dynamics equations; large-particle method; computational experiment; tungsten erosion; mathematics; general
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