Fuel inventory of the iPWR Design-1 and Design-2
Description
The amount of Fission Products (FP) in the core is one of the key parameters driving the progression and the
radiological consequences of a hypothetical postulated Severe Accident (SA) in a Nuclear Power Plant (NPP).
The larger the mass of FPs loaded, the larger is the decay power, which triggers the accident after the reactor
scram. Having this in mind, the effect of the employment of different amount of FPs should be considered in
the analysis of a hypothetical SA.
The current report focusses on the evaluation of the fuel inventory at different burn-up states in the integral
Pressurized Water Reactor (iPWR) Design-1 and Design-2 in the framework of the work activities of the Task
2.3 of the WP2 (SCENARIOS) of the SASPAM-SA project. With this goal, depletion calculations have been
performed at the Karlsruhe Institute of Technology (KIT, Germany) by means of the CASMO5 lattice physics
code [1], developed by Studsvik Scandpower, for a representative fuel assembly of the iPWR Design-1 and
Design-2 in order to assess a database of fuel inventories to be employed in the activities of the SASPAM-SA
project. The calculation assumptions as well as the results of such evaluations are reported and discussed in
the present document.
Files
SASPAM-SA D2.1_v2.pdf
Files
(16.7 MB)
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