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@article{SJIM_2023_26_2_a6, author = {V. A. Ivashchenko and P. D. Lobanov and N. I. Yavorsky and M. P. Tokarev and R. I. Mullyadzhanov}, title = {Direct numerical simulation of the peripheral and the internal configuration of the model fuel assembly}, journal = {Sibirskij \v{z}urnal industrialʹnoj matematiki}, pages = {74--80}, publisher = {mathdoc}, volume = {26}, number = {2}, year = {2023}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/SJIM_2023_26_2_a6/} }
TY - JOUR AU - V. A. Ivashchenko AU - P. D. Lobanov AU - N. I. Yavorsky AU - M. P. Tokarev AU - R. I. Mullyadzhanov TI - Direct numerical simulation of the peripheral and the internal configuration of the model fuel assembly JO - Sibirskij žurnal industrialʹnoj matematiki PY - 2023 SP - 74 EP - 80 VL - 26 IS - 2 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/SJIM_2023_26_2_a6/ LA - ru ID - SJIM_2023_26_2_a6 ER -
%0 Journal Article %A V. A. Ivashchenko %A P. D. Lobanov %A N. I. Yavorsky %A M. P. Tokarev %A R. I. Mullyadzhanov %T Direct numerical simulation of the peripheral and the internal configuration of the model fuel assembly %J Sibirskij žurnal industrialʹnoj matematiki %D 2023 %P 74-80 %V 26 %N 2 %I mathdoc %U http://geodesic.mathdoc.fr/item/SJIM_2023_26_2_a6/ %G ru %F SJIM_2023_26_2_a6
V. A. Ivashchenko; P. D. Lobanov; N. I. Yavorsky; M. P. Tokarev; R. I. Mullyadzhanov. Direct numerical simulation of the peripheral and the internal configuration of the model fuel assembly. Sibirskij žurnal industrialʹnoj matematiki, Tome 26 (2023) no. 2, pp. 74-80. http://geodesic.mathdoc.fr/item/SJIM_2023_26_2_a6/
[1] IAEA Energy, Electricity and Nuclear Power Estimates for the Period up to 2050, Internat. Atomic Energy Agency, 2021
[2] L. Meyer, “From discovery to recognition of periodic large scale vortices in rod bundles as source of natural mixing between subchannels — A review”, Nuclear Engrg. Design, 240 (2010), 1575–1588 | DOI
[3] A. Shams, T. Kwiatkowski, “Towards the direct numerical simulation of a closely-spaced bare rod bundle”, Ann. Nuclear Energy, 121 (2018), 146–161 | DOI
[4] Nek5000 web page, https://nek5000.mcs.anl.gov/
[5] V. A. Ivashchenko, E. V. Palkin, V. O. Ryzhenkov, R. I. Mullyadzhanov, “POD-analysis of the near field of a turbulent circular jet when mixing gases of different densities”, Thermophysics and Aeromechanics, 28:1 (2021), 55–64 | DOI
[6] M. Bobrov, M. Hrebtov, V. Ivashchenko, R. Mullyadzhanov, A. Seredkin, M. Tokarev, D. Zaripov, V. Dulin, D. Markovich, “Pressure evaluation from Lagrangian particle tracking data using a grid-free least-squares method”, Measurement Sci. Technology, 32:8 (2021), 084014 | DOI
[7] D. Zaripov, V. Ivashchenko, R. Mullyadzhanov, R. Li, N. Mikheev, C. J. Kähler, “On a mechanism of near-wall reverse flow formation in a turbulent duct flow”, J. Fluid Mech., 923 (2021), A20 | DOI | MR | Zbl
[8] A. T. Patera, “A spectral element method for fluid dynamics: laminar flow in a channel expansion”, J. Comput. Phys., 54:3 (1984), 468–488 | DOI | Zbl
[9] J. S. Hesthaven, S. Gottlieb, D. Gottlieb, Spectral Methods for Time-Dependent Problems, Cambridge Monographs on Applied and Computational Mathematics, 21, Cambridge: Univ. Press, 2007 | MR | Zbl