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DOI: 10.1615/ICHMT.2001.RadiationSymp.570
9 pages

V. I. Mazhukin
Institute of Mathematical Simulation, Russian Academy of Sciences, Moscow, Russia

V. V. Nosov
Institute of Mathematical Simulation, Russian Academy of Sciences, Moscow, Russia

Gilles Flamant
CNRS PROMES UPR 8521, Tecnosud, Rambla de la Thermodynamique, 66100 Perpignan, France

I. Yu. Smurov
C. N. R. S., Institut de Science et de Genie des Materiaux et Procedes B. P. 5, Odeillo, F-66125 Font-Romeu Cedex; Ecole Nationale d'Ingenieurs de Saint-Etienne, 58 rue Jean Parot, 42023 Saint -Etienne Cedex 2, France


The influence of radiation transfer on dynamics of laser-induced plasma of Al vapor is analyzed numerically. Mathematical description of the plasma is performed in the framework of the transient 2D radiation gas dynamics (RGD); the multi-group diffusion approximation with 7−1000 spectral intervals is used to describe plasma radiation transfer. The performed research allows us to conclude that radiative transfer substantially affects the expansion of laser plasma for the nanosecond action intensity of 109−2×1010 W/cm2 and the pulse energies of 0.01−0.4 J. The radiative energy losses can reach 60% of the laser pulse energy absorbed by the plasma. The spectral composition of escaping radiation is non-equilibrium and qualitatively corresponds to the optically thin approximation. The application of the Planck averaging technique make it possible to predict the correct values of total quantities (integrated over the entire frequency spectrum) using several tens of groups.

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