Review of software solutions and results of computational and experimental studies and performance optimization of systems with thermionic energy conversion
Автор: Alekseev Pavel Aleksandrovich, Krotov Aleksey Dmitrievich, Kukharchuk Oleg Filaretovich, Pyshko Aleksandr Pavlovich, Yarygin Valery Ivanovich
Журнал: Космическая техника и технологии @ktt-energia
Рубрика: Системный анализ, управление и обработка информации
Статья в выпуске: 3 (30), 2020 года.
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The main objective of this paper is to summarize multiphysical tasks and methods for their solution in the area of space nuclear power systems being solved and developed by specialists of JSC SSC RF-IPPE. The physical and technical justification of the development and operation of space nuclear power systems with direct conversion of thermal energy into electricity includes an electrothermophysical calculation of characteristics of a thermionic electrical power generating cell and electrical power generating channel as a whole, neutronic physical calculations and structural optimization of the core and radiation shielding. To determine the electrothermophysical performance of the electrical power generating channel, its 3D detailed computation (software C0MS0L-EGK) is used. For the neutronic calculation of the core and radiation shielding characteristics, unified 3D computational software systems are used that implement the Monte Carlo method (in particular, MMKfK-2, MCNP), making it possible to take into account the heterogeneity and all geometry features. The computational procedures and solutions listed in the review are applied in a systematic and integrated manner at JSC SSC RF-IPPE in justification of performance of space nuclear power systems being currently designed.
Mcnp, comsol-эгк, thermionic re actor-converter, radiation shielding, electrical power generating channel, c0ms0l-egk
Короткий адрес: https://sciup.org/143178136
IDR: 143178136 | DOI: 10.33950/spacetech-2308-7625-2020-3-114-128