Electronuclear Subcritical Blanket Based on a Modular Core Design with Molten-Salt Solutions of Fissile Fluorides in Fluoride Melt

The concept of a research, electronuclear, molten-salt, subcritical blanket implementing a structural advantage of the requisite number of radiation-safety barriers is presented. The modular structure of the core is validated by research satisfying the initial requirements k eff ≤ 0.98 and neutron p...

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Veröffentlicht in:Atomic energy (New York, N.Y.) N.Y.), 2015-12, Vol.119 (2), p.73-83
Hauptverfasser: Goverdovskii, A. A., Ovcharenko, M. K., Belinskii, V. S., Pyshko, A. P., Sulim, A. T., Shcherbakov, S. I.
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container_issue 2
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container_title Atomic energy (New York, N.Y.)
container_volume 119
creator Goverdovskii, A. A.
Ovcharenko, M. K.
Belinskii, V. S.
Pyshko, A. P.
Sulim, A. T.
Shcherbakov, S. I.
description The concept of a research, electronuclear, molten-salt, subcritical blanket implementing a structural advantage of the requisite number of radiation-safety barriers is presented. The modular structure of the core is validated by research satisfying the initial requirements k eff ≤ 0.98 and neutron power in the blanket ~1 MW. The proposed technical solutions can serve to confirm the feasibility of the design.
doi_str_mv 10.1007/s10512-015-0032-4
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1573-8205
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subjects Atomic energy
Atomic structure
Barriers
Cooling
Feasibility
Fluorides
Hadrons
Heat
Heavy Ions
Melts
Modular
Neutrons
Nuclear Chemistry
Nuclear Energy
Nuclear industry
Nuclear Physics
Nuclear power generation
Physics
Physics and Astronomy
R&D
Radiation
Research & development
Safety barriers
Salt
Sodium
Studies
Uranium
title Electronuclear Subcritical Blanket Based on a Modular Core Design with Molten-Salt Solutions of Fissile Fluorides in Fluoride Melt
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