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Numerical simulation of effect of carrier gas on flow state in laser isotope separation

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DOI: 10.23977/jeeem.2023.060106 | Downloads: 34 | Views: 1441

Author(s)

Jia Ma 1

Affiliation(s)

1 China Institute of Atomic Energy, Beijing, 102413, China

Corresponding Author

Jia Ma

ABSTRACT

The gas flow in the Condensation Repression by Isotope Selective Laser Activation (CRISLA) is modeled and computed with computational fluid dynamics method. The temperature and velocity distributions of jet flows formed by different gases through nozzle are obtained. Based on the analysis of simulation results, the carrier gas is selected out from the perspective of flow, beneficial to the improvement of isotope separation effect. Our results pave the way towards the follow-up research.

KEYWORDS

Laser isotope separation, Numerical simulation, Supersonic jet flow

CITE THIS PAPER

Jia Ma, Numerical simulation of effect of carrier gas on flow state in laser isotope separation. Journal of Electrotechnology, Electrical Engineering and Management (2023) Vol. 6: 32-36. DOI: http://dx.doi.org/10.23977/jeeem.2023.060106.

REFERENCES

[1] Jeff W, Eerkens Jaewoo Kim. Isotope separation by selective laser-assisted repression of condensation in supersonic free jets [J]. Aiche Journal, 2010, 56(9):2331-2337.
[2] Wu Haosong, Dai Ding. U.S. Department of Energy and Global Laser Enrichment Revise Depleted Uranium Supply Agreement[J]. Foreign Nuclear News,2020, (07):24.
[3] Aaron Taylor Baldwin. Optimization and Analysis of the Laser Isotope Separation Technique SILEX and Ensuing Proliferation Ramifications [D]. Boston: Massachusetts Institute of Technology, 2016.
[4] Anderson J D,Wendt J. Computational fluid dynamics[M. New York:McGraw-Hill,1995.
[5] Zhao Fei, Zhang Yanling, Zhu Rong, Wang Hui. Turbulence model in supersonic jet flow field [J].Chinese Journal of Engineering, 2014, 36(03):366-372.

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