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  4. Neutronics investigations for the lower part of a Westinghouse SVEA-96+ assembly
 
research article

Neutronics investigations for the lower part of a Westinghouse SVEA-96+ assembly

Murphy, Mike F.
•
Luthi, A.
•
Seiler, R.
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2002
Nuclear Science and Engineering

Accurate critical experiments have been performed for the validation of total fission (Ftot) and 238U-capture (C8) reaction rate distributions obtained with CASMO-4, HELIOS, BOXER, and MCNP4B for the lower axial region of a real Westinghouse SVEA-96 + fuel assembly. The assembly comprised fresh fuel with an average 235U enrichment of 4.02 wt%, a maximum enrichment of 4.74 wt%, 14 burnable-absorber fuel pins, and full-density water moderation. The experimental configuration investigated was core 1A of the LWR-PROTEUS Phase 1 project, where 61 different fuel pins, representing 64% of the assembly, were gamma-scanned individually. Calculated (C) and measured (E) values have been compared in terms of C/E distributions. For Ftot, the standard deviations are 1.2% for HELIOS, 0.9% for CASMO-4, 0.8% for MCNP4B, and 1.7% for BOXER. Standard deviations of 1.1% for HELIOS, CASMO-4, and MCNP4B and 1.2% for BOXER were obtained in the case of C8. Despite the high degree of accuracy observed on the average, it was found that the five burnable-absorber fuel pins investigated showed a noticeable underprediction of Ftot, quite systematically, for the deterministic codes evaluated (average C/E for the burnable-absorber fuel pins in the range 0.974 to 0.988, depending on the code).

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Type
research article
DOI
10.13182/NSE02-A2264
Author(s)
Murphy, Mike F.
Luthi, A.
Seiler, R.
Grimm, P.
Joneja, O.
Meister, A.
Van Geemert, R.
Jatuff, F.
Brogli, R.
Jacot-Guillarmod, R.
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Date Issued

2002

Publisher

American Nuclear Society

Published in
Nuclear Science and Engineering
Volume

141

Issue

1

Start page

32

End page

45

Subjects

Neutrons

•

Assembly

•

Fission reactions

•

Nuclear fuels

•

Rate constants

Note

Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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Available on Infoscience
September 17, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/53847
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