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  4. Numerical neutronics benchmark study for inert matrix plutonium fuels in uranium dioxide and mixed plutonium-uranium dioxide environments
 
research article

Numerical neutronics benchmark study for inert matrix plutonium fuels in uranium dioxide and mixed plutonium-uranium dioxide environments

Paratte, J. M.
•
Chawla, R.  
•
Akie, H.
Show more
2001
Progress in Nuclear Energy

A numerical benchmark exercise has been under way for comparing the results of different calculational methods/data sets used for the analysis of light water reactor (LWR) configurations employing Pu inert matrix fuels (IMFs). The first phase of the exercise was devoted to infinite arrays of identical IMF cells. The main feature investigated in the second phase has been the influence of the neutron spectra in UO2 and MOX cores on individual IMF cells. Phase 3 is concerned with the more realistic situation of an IMF assembly surrounded by UO2 assemblies. Significant discrepancies have been observed for power peaking effects and delayed neutron parameters in Phase 2. In Phase 3, neutron balance differences for the IMF, particularly at EOL, are found to be significantly larger than were observed in Phase 1.

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Type
research article
DOI
10.1016/S0149-1970(00)00130-X
Author(s)
Paratte, J. M.
Chawla, R.  
Akie, H.
Damen, P. M. G.
Joo, H. K.
Mikolas, P.
Padovani, E.
Peneliau, Y.
Youinou, G.
Date Issued

2001

Publisher

Elsevier Science Ltd

Published in
Progress in Nuclear Energy
Volume

38

Issue

3-4

Start page

335

End page

342

Subjects

Plutonium

•

Alumina

•

Calculations

•

Fuel cells

•

Light water reactors

•

Magnesia

•

Mixed oxide fuels

•

Neutrons

•

Numerical methods

•

Uranium dioxide

•

Zirconia

Note

Paul Scherrer Institute, CH-5232 PSI, Villigen, Switzerland

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LRS  
Available on Infoscience
September 17, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/53845
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