Induced nuclear reactions: processes – systems – and elements – Testing – sensing – measuring – or detecting a fission reactor...
Patent
1996-01-29
1999-07-13
Behrend, Harvey E.
Induced nuclear reactions: processes, systems, and elements
Testing, sensing, measuring, or detecting a fission reactor...
376267, G21C 1700
Patent
active
059237171
ABSTRACT:
The present invention, in one aspect, is a method for identifying an optimum core loading arrangement. The method generally has an initialization phase and a running, or search, phase. In the initialization phase, an initial core loading arrangement is identified based on the relative reactivity levels of the bundles to be loaded and the reactor core locations. Once the initial core loading arrangement is identified, such arrangement is then optimized, within the defined constraints, in the running phase. More specifically, in the running phase, each core location is analyzed to determine whether such core location reactivity level can be changed from the initial reactivity level to either satisfy a constraint or optimize cycle energy, or both.
REFERENCES:
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XP 000653395, Nuclear Science and Engineering, 118, pp. 67-78 (1994): "Autoload, An Automatic Optimal Pressurized Water Reactor Reload Design System with an Expert Module", Li et al.
XP 000653397, Nuclear Science and Engineering, 115, pp. 152-163 (1993): "Optimal Fuel Loading Pattern Design Using an Artificial Neural Network and a Fuzzy Rule-Based System", Kim et al.
XP 000653472, Nuclear Technology, vol. 74, Jul. 1986, pp. 5-13: "Automatic Determination of Pressurized Water Reactor Core Loading Patterns that Maximize Beginning-of-Cycle Reactivity Within Power-Peaking and Burnup Constraints", Hobson et al.
Nuclear Technology, vol. 61, pp. 78-92, Yeh et al, Apr. 1983.
Behrend Harvey E.
General Electric Company
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