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The computational optimization of indirect-driven ICF targets

The computational optimization of indirect-driven ICF targets

Authors :
V. E. Chernyakov
R.M. Kozybaev
N. G. Karlykhanov
Ya.Z. Kaudiev
V. A. Lykov
E. N. Avrorin
Source :
Proceedings of 16th International Symposium on Fusion Engineering.
Publication Year :
2002
Publisher :
IEEE, 2002.

Abstract

The 1-D ERA code results of the optimization of the hohlraum temperature time-dependence and the target design to obtain gain of 20 needed for Engineering Test Facility (ETF) are presented. In accordance with the ERA code calculations, it is possible to achieve the thermonuclear energy yield of 100 MJ from the practicable shell targets with the diameter of 4,3 mm, the initial aspect ratio of 10-20, the DT-ice layer thickness about of 100 /spl mu/m frozen on inner surface of glass shell if the hohlraum temperature rises linearly in time during 15-20 nsec up to maximum values of 250-350 eV. The X-ray spectrum and the neutron-induced radioactivity are calculated.

Details

Database :
OpenAIRE
Journal :
Proceedings of 16th International Symposium on Fusion Engineering
Accession number :
edsair.doi...........aa5e246fb11221a70658728e69e64a9d
Full Text :
https://doi.org/10.1109/fusion.1995.534172