Advanced Approach for Radiation Transport Description in 3D Collisional-radiative Models

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Date
2017
Volume
4
Issue
2
Journal
Series Titel
Book Title
Publisher
Praha : Czech Technical University in Prague, Faculty of Electrical Engineering, Department of Physics
Abstract

The description of radiation transport phenomena in the frames of collisional-radiative models requires the solution of Holstein-Biberman equation. An advanced solutuion method for 3D plasma obejcts is proposed. The method is applicable for various line contours in a wide range of absorption coefficients. Developed approach is based on discretization of the arbitrary plasma volume on a Cartesian voxel grid. Transport of photons between the cells is computed using the ray traversal algorithm by Amanatides [1]. Solution of the particle balance equations with computed in advance radiative transfer matrix is demonstrated for various typical arc shapes, like e.g. free-burning arc and cylindric arc. Results are compared with corresponding calculations using previously developed approaches. As the method is suited for finite geometries and allows for a strict solution of the radiation transport equation, applicability ranges of previous approximations can be specified.

Description
Keywords
radiation transport, resonance radiation, plasma modelling, arcs, Konferenzschrift
Citation
Kalanov, D., Golubovskii, Y. B., Uhrlandt, D., & Gortschakow, S. (2017). Advanced Approach for Radiation Transport Description in 3D Collisional-radiative Models. 4(2). https://doi.org//10.14311/ppt.2017.2.112
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License
CC BY 3.0 Unported