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  3. Parametric effects on reactivity instabilities and nonlinear oscillations in a nuclear-coupled double channel natural circulation boiling system
 
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Parametric effects on reactivity instabilities and nonlinear oscillations in a nuclear-coupled double channel natural circulation boiling system

Source
NUCLEAR ENGINEERING AND DESIGN
ISSN
0029-5493
Date Issued
2010-05-01
Author(s)
Prasad, G. V. Durga
Pandey, Manmohan
DOI
10.1016/j.nucengdes.2009.12.031
Volume
240
Issue
5
Abstract
Natural circulation boiling systems consisting of parallel channels can undergo different types of oscillations (In-phase or out-of-phase) depending on the geometric parameters and operating conditions The coupling between the neutronics and thermal-hydraulics has a strong influence on the modes of oscillations in a multi-channel system In the present study a natural circulation double channel system is modeled The reactor kinetics is represented by multi-point neutron kinetics model which includes the spatial variation of neutrons. Parametric effects on stability of the system, frequency, and the oscillation modes (reactivity instabilities) are investigated It is found that at high powers compact cores will be more stable compared to larger cores, while the opposite will be the case at low powers. Further, nonlinear analysis is carried out to investigate the parametric effects on the bifurcation characteristics, transition from one mode to the other mode and chaotic oscillations. The delay in heat transfer and strong neutron interactions between the subcores delays the occurrence of chaotic oscillations (C) 2010 Elsevier B V. All rights reserved
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Sherpa Url
https://v2.sherpa.ac.uk/id/publication/16526
URI
http://repository.iitgn.ac.in/handle/IITG2025/19401
Subjects
Nuclear Science & Technology
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