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Scatter refueling modified

Watt [W2] has used the computer codes CELL and CORE to evaluate the reactivity-limited bumup of a 1060-MWe PWR operated with modified scatter refueling as a function of the... [Pg.100]

Figure 3.11 Reactivity-limited burn-up versus number of fuel zones for various feed enrichments, 1060-MWe PWR, modified scatter refueling, steady state. Figure 3.11 Reactivity-limited burn-up versus number of fuel zones for various feed enrichments, 1060-MWe PWR, modified scatter refueling, steady state.
This refueling pattern is somewhat similar to modified scatter refueling. The maximum relative power, at 5DG and 5GD, is now 1.36. The average bumup in cycle 3 is 9894 MWd/MT. The total thermal energy is 866.5 GWd or 20,796 X 10 kWh. [Pg.111]

The 1060-MWe PWR discussed in Sec. 3.4 is to be operated with steady, four-zone modified scatter refueling, with 1.0 year between successive refuelings. The availability-based capacity factor is 0.8 and the refueling downtime is 0.15 year. The reactor fuel inventory is 88.961 MT heavy metal. [Pg.154]


See other pages where Scatter refueling modified is mentioned: [Pg.100]    [Pg.100]   
See also in sourсe #XX -- [ Pg.100 ]




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