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Additional resources for System 80+ Standard [nucl. powerplnt] Design - Vol 12
Mechanisms groups 20) and element of 20) is used to simulate within the reactor core. 0-6 August H 31, 1990 CESSAR CERTIFICATION o,,s,o,, Results from the TORC program include the core radial distribution of the relative channel axial flow rate that is used to calibrate CETOP, described in Reference 29. Transient core heat flux and thermal-hydraulic conditions from CESEC are input to CETOP which employs the CE-I critical heat flux correlation described in Reference 19. CETOP is used for all DNBR calculations.
Less negative). 3). 6. This shutdown worth versus position curve yields a conservatively slower rate of negative reactivity insertion than is expected to occur during the majority of operations, including power maneuvering. Accordingly, it is a conservative representation of shutdown reactivity insertion rates for reactor trips which occur as a result of the events analyzed. For some events, a less limiting axial shape is selected that is still conservative relative to the axial shape used for the event DNBR analyses.
2 SYSTEMS OPERATION During the course of any event, various systems may be called upon to function. 7, respectively). 2. 0-2 lists the RPS trips for which credit is taken in the analyses discussed in Chapter 15, including the setpoints and the trip delay times associated with each trip. The analyses take into consideration the response times of actuated devices after the value of the monitored parameter at the sensor equals or exceeds the trip setpoint. The reactor protection system response time is the sum of the sensor response time and the reactor trip delay time.
System 80+ Standard [nucl. powerplnt] Design - Vol 12