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J. Progress in Nuclear Energy, Vol. 33, Nr. 1/2, pgs. 175-216, 1998 [2] D’Auria F., Debrecin N., Galassi G.M.

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References

[1] D’Auria F., Galassi G.M.

‘Code Validation and Uncertainties in System Thermal-hydraulics’

J. Progress in Nuclear Energy, Vol. 33, Nr. 1/2, pgs. 175-216, 1998 [2] D’Auria F., Debrecin N., Galassi G.M.

‘Outline of the Uncertainty Methodology based on Accuracy Extrapolation (UMAE)’

J. Nuclear Technology, Vol. 109, Nr. 1, 1995, pgs. 21-38 [3] Mavko B., Prosek A., D’Auria F.

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Vol. 1, NEA/NSC/DOC(2002)6

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Washington DC, USA, November 13-17, 1994 [6] M. Champ, J. Lewi, JP Merle, J. Papin

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[10] J.P. Breton et alii

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[12] R. K. McCardell, R. O. Meyer, H. H. Scott

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[13] International Atomic Energy Agency, IAEA

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‘Nuclear Power Reactor Safety’

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[15] Nuclear Energy Institute

‘Source Book of Soviet-Designed NPP in Russia, Ukraine, Lithuania, Armenia, the Czech Republic, the Slovak Republic, Hungary and Bulgaria’

Fifth Edition, 1997 [16] J.R. Lamarsh

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Addison Wesley Publishing Company, Inc., December 1965 [17] International Atomic Energy Agency, IAEA

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IAEA TECDOC-1351, Vienna, May 2003 [18] Oak Ridge National Laboratory, ORNL Parallel Virtual Machine (PVM) manual

http://www.epm.ornl.gov/pvm [19] Studsvik™ ScandPower ‘HELIOS Methods’

April 2000

[20] Purdue University PARCS 2.43 code manuals March 2002

[21] Korean Atomic Energy Research Institute - KAERI

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PARCS code website, May 2000

[22] Idaho National Engineering and Environment Laboratory, INEEL, The Thermal- hydraulics Group

RELAP5/MOD3.3 code manuals

Formerly NUREG/CR-5535, March 1998

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The problem of numerical underestimation of Fissions per Initial Metal Atoms in burnup codes has been studied theoretically and numerically. Analytical considerations indicate