A study on boiling water reactor regional stability from the viewpoint of higher harmonics
Journal Article
·
· Nuclear Technology; (United States)
OSTI ID:7039896
- Toshiba Corp., Kawasaki (Japan)
- Toshiba Corp., Tokyo (Japan)
A quantitative study on a mechanism for boiling water reactor regional stability has been carried out from the viewpoint of higher harmonics. In the mechanism, the gain decrease in the void-to-power transfer function can be explained by the higher harmonics mode subcriticality. It is shown that the thermal-hydraulic feedback effect can compensate for the gain decrease, and regional oscillation can be sustained that way. For quantitative evaluations, a three-dimensional higher harmonics analysis model has been developed. The results show that the first azimuthal harmonics subcriticality has a relatively small value under a regionally unstable condition. Comparing the subcriticality and the steady-state power distribution, it is shown that the distribution exists whose first azimuthal harmonics subcriticality takes a small value. A method of decomposition for the oscillated power responses into the harmonics modes is presented. The results show that the corewide oscillation power response consists almost entirely of the fundamental mode, and the regional oscillation power response consists almost entirely of the first azimuthal harmonics mode. This indicates that regional oscillation is a phenomenon in which the first azimuthal harmonics mode oscillates on the basis of the fundamental mode.
- OSTI ID:
- 7039896
- Journal Information:
- Nuclear Technology; (United States), Journal Name: Nuclear Technology; (United States) Vol. 106:3; ISSN 0029-5450; ISSN NUTYBB
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
21 SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS
210100* -- Power Reactors
Nonbreeding
Light-Water Moderated
Boiling Water Cooled
BWR TYPE REACTORS
ENERGY TRANSFER
ENRICHED URANIUM REACTORS
HEAT TRANSFER
KINETICS
MATHEMATICAL MODELS
POWER DISTRIBUTION
POWER REACTORS
REACTOR KINETICS
REACTOR STABILITY
REACTORS
STABILITY
SUBCRITICALITY
THERMAL REACTORS
WATER COOLED REACTORS
WATER MODERATED REACTORS
210100* -- Power Reactors
Nonbreeding
Light-Water Moderated
Boiling Water Cooled
BWR TYPE REACTORS
ENERGY TRANSFER
ENRICHED URANIUM REACTORS
HEAT TRANSFER
KINETICS
MATHEMATICAL MODELS
POWER DISTRIBUTION
POWER REACTORS
REACTOR KINETICS
REACTOR STABILITY
REACTORS
STABILITY
SUBCRITICALITY
THERMAL REACTORS
WATER COOLED REACTORS
WATER MODERATED REACTORS