Zobrazeno 1 - 10
of 48
pro vyhledávání: '"E. V. Moiseenko"'
Publikováno v:
High Temperature. 60:222-232
Publikováno v:
Radioactive Waste. 14:87-95
The article describes an approach to mesh generation allowing to address radioactive waste management tasks. The approach is based on representing an object as a set of simple geometric shapes (primitives). The characteristics of the mesh (type, size
Publikováno v:
Radioactive Waste. 10:92-100
Publikováno v:
Radioactive Waste. 12:101-111
Numerical simulation of thermomechanical processes in a deep underground radioactive waste repository requires information on the host rock and the engineered barriers properties at a scale of dozens of centimeters, meters and more. However, the extr
Autor:
V. M. Alipchenkov, Yu. A. Zeigarnik, N. A. Mosunova, E. F. Seleznev, D. A. Afremov, P. V. Kolobaeva, V. S. Gorbunov, E. V. Moiseenko, A. A. Semchenkov, S. L. Osipov, D.P. Veprev, A. V. Boldyrev, E. V. Usov, Valery F. Strizhov
Publikováno v:
Thermal Engineering. 65:627-640
The article presents information on the validation and verification (V&V) of the first version (V1) of the EUCLID integrated code intended for safety analysis of operating or designed liquid metal (sodium, lead, or lead–bismuth) cooled reactors und
Publikováno v:
EPJ Web of Conferences, Vol 195, p 03005 (2018)
Publikováno v:
Ukrainian Antarctic Journal. :254-264
Publikováno v:
Nuclear Engineering and Design. 261:107-115
The model of spatial distribution of fission product (FP) activity and decay heat in core melt of light water reactor under severe accident conditions is proposed. It is based on thermodynamical consideration of “U–Zr–O–Fe–FP” system as a
Publikováno v:
Ukrainian Antarctic Journal. :375-389
Autor:
E. V. Moiseenko, A. Volchek, A. S. Filippov, Yu.A. Zvonarev, N. P. Kiselev, D. F. Tsurikov, V.L. Kobzar, Valery F. Strizhov
Publikováno v:
Physics of Atomic Nuclei. 74:1845-1853
A brief description of the HEFEST-ULR code and numerical results for corium behavior in a core catcher for the VVER-1200 (NPP-2006 project) are presented. Physical, chemical, and thermal processes during corium pool formation and cooling in the core