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Baur, A.; Bourdet, L.; Dejonghe, G.; Gonnord, J.; Monnier, A.; Nimal, J.C.; Vergnaud, T.
CEA Centre d'Etudes Nucleaires de Saclay, 91 - Gif-sur-Yvette (France)1982
CEA Centre d'Etudes Nucleaires de Saclay, 91 - Gif-sur-Yvette (France)1982
AbstractAbstract
[en] TRIPOLI.2 solves the Boltzmann equation for source and critical problems, time depending or not, by the Monte Carlo method. The code can handle all types of interactions and uses a library processed from ENDF/B. Special attention has been given to the resonance region processing and to the thermal kernel treatment. Sampling using the free gas and the S (α, β) model is described in details. The three dimensional geometry is composed of volumes limited by any portion of linear or quadratic surfaces. Extended facilities to process the output are provided. Two comparisons with experiment and computational benchmark are presented: comparison of a calculated spectra in borated water with measurements; computational benchmark of a standard PWR cell showing the influence of cross section data (UKNDL-ENDF/B4-ENDF/B5)
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May 1982; 18 p; Seminar on thermal reactor benchmark calculations, techniques, results, and applications; Upton, NY (USA); 17 - 18 May 1982
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