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Experimental studies of hydrodynamic and mass-transfer properties of coolant flow in VVER fuel assemblies TVSA

The results of experimental studies of the local hydrodynamics and mass transfer of coolant in the characteristic zone of VVER fuel assemblies using mixing lattices of structurally different types are presented. These studies were performed on an aerodynamic stand by the method of impurity diffusion...

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Published in:Atomic energy (New York, N.Y.) N.Y.), 2013-03, Vol.113 (5), p.314-319
Main Authors: Dmitriev, S. M., Borodin, S. S., Legchanov, M. A., Solntsev, D. N., Sorokin, V. D., Khrobostov, A. E.
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container_end_page 319
container_issue 5
container_start_page 314
container_title Atomic energy (New York, N.Y.)
container_volume 113
creator Dmitriev, S. M.
Borodin, S. S.
Legchanov, M. A.
Solntsev, D. N.
Sorokin, V. D.
Khrobostov, A. E.
description The results of experimental studies of the local hydrodynamics and mass transfer of coolant in the characteristic zone of VVER fuel assemblies using mixing lattices of structurally different types are presented. These studies were performed on an aerodynamic stand by the method of impurity diffusion for several experimental scaled models. The studies were performed on a section of self-similar flow, so that the results can be used to convert to natural conditions of coolant flow in the core in regular TVSA. These studies refine the local and mass-transfer characteristics of coolant flow in order to reduce the conservatism in the evaluation of the heat-engineering reliability of the VVER core with TVSA fuel assemblies. The results also comprise a database for verifying CFD codes and programs for cellular calculation of a VVER core.
doi_str_mv 10.1007/s10512-013-9638-6
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identifier ISSN: 1063-4258
ispartof Atomic energy (New York, N.Y.), 2013-03, Vol.113 (5), p.314-319
issn 1063-4258
1573-8205
language eng
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source ABI/INFORM Global; Springer Nature
subjects Analysis
Assemblies
Computational fluid dynamics
Coolants
Cooling
Fluid dynamics
Fluid flow
Fluid mechanics
Fuels
Hadrons
Heavy Ions
Hydraulics
Hydrodynamics
Mass transfer
Mathematical models
Nuclear Chemistry
Nuclear Energy
Nuclear engineering
Nuclear Physics
Nuclear reactors
Physics
Physics and Astronomy
Propane
Reynolds number
Self-similarity
Studies
title Experimental studies of hydrodynamic and mass-transfer properties of coolant flow in VVER fuel assemblies TVSA
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