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Online convergence forecast for axial xenon oscillations of the power density in VVER-1000 and -1200 reactors
by
Filimonov, P. E.
, Tiunov, G. A.
, Kripak, V. R.
in
Computer applications
/ Convergence
/ Convergence (Social sciences)
/ Damping
/ Forecasts and trends
/ Internet
/ Nuclear energy
/ Nuclear power plants
/ Nuclear reactors
/ Oscillations
/ Power plant operation
/ Power reactors
/ Reactors
/ Simulation methods
/ Software
/ Water-power
/ Xenon
2025
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Online convergence forecast for axial xenon oscillations of the power density in VVER-1000 and -1200 reactors
by
Filimonov, P. E.
, Tiunov, G. A.
, Kripak, V. R.
in
Computer applications
/ Convergence
/ Convergence (Social sciences)
/ Damping
/ Forecasts and trends
/ Internet
/ Nuclear energy
/ Nuclear power plants
/ Nuclear reactors
/ Oscillations
/ Power plant operation
/ Power reactors
/ Reactors
/ Simulation methods
/ Software
/ Water-power
/ Xenon
2025
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Do you wish to request the book?
Online convergence forecast for axial xenon oscillations of the power density in VVER-1000 and -1200 reactors
by
Filimonov, P. E.
, Tiunov, G. A.
, Kripak, V. R.
in
Computer applications
/ Convergence
/ Convergence (Social sciences)
/ Damping
/ Forecasts and trends
/ Internet
/ Nuclear energy
/ Nuclear power plants
/ Nuclear reactors
/ Oscillations
/ Power plant operation
/ Power reactors
/ Reactors
/ Simulation methods
/ Software
/ Water-power
/ Xenon
2025
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Online convergence forecast for axial xenon oscillations of the power density in VVER-1000 and -1200 reactors
Journal Article
Online convergence forecast for axial xenon oscillations of the power density in VVER-1000 and -1200 reactors
2025
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Overview
Transient xenon processes in the core of VVER-1000 and -1200 water-water power reactors can lead to the occurrence of axial power oscillations. Online forecast of oscillation convergence represents an urgent and currently unresolved task of nuclear power plant operation. To develop and theoretically justify an improved method for the online forecast of xenon oscillations. The data from experiments conducted at the Novovoronezh NPP power unit and computational simulation using the modified Imitator Reaktora software were used. The developed method forecasts axial oscillations with an error of no more than 18%. In addition to the acceptable level of deviations, the reliability of the online forecast is significantly increased by taking into account damping of axial oscillations. The analytical and computational justification of the method is presented; results of comparison between the forecast with experimental data are provided. An improved method for the online forecast of oscillations taking into account convergence is integrated into the Imitator Reaktora software for use at nuclear power plants.
Publisher
Springer,Springer Nature B.V
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