Accurate neutronic models are needed for the interpretation of pulsed experiments in subcritical systems. In this work, the extent of spatial and spectral effects in the pulse propagation phenomena is investigated and the analysis is applied to the GUINEVERE experiment. The multigroup cross section data is generated by the Monte Carlo SERPENT code and the neutronic evolution following the source pulse is simulated by a kinetic diffusion code. The results presented show that important spatial and spectral aspects need to be properly accounted for and that a detailed energy approach may be needed to adequately capture the physical features of the system to the pulse injection.

Spatial and Spectral Effects in Subcritical System Pulsed Experiments / Dulla, Sandra; Nervo, Marta; Ravetto, Piero; M., Carta. - ELETTRONICO. - (2013). (Intervento presentato al convegno International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering (M&C 2013) tenutosi a Sun Valley, ID nel May 5-9 2013).

Spatial and Spectral Effects in Subcritical System Pulsed Experiments

DULLA, SANDRA;NERVO, MARTA;RAVETTO, PIERO;
2013

Abstract

Accurate neutronic models are needed for the interpretation of pulsed experiments in subcritical systems. In this work, the extent of spatial and spectral effects in the pulse propagation phenomena is investigated and the analysis is applied to the GUINEVERE experiment. The multigroup cross section data is generated by the Monte Carlo SERPENT code and the neutronic evolution following the source pulse is simulated by a kinetic diffusion code. The results presented show that important spatial and spectral aspects need to be properly accounted for and that a detailed energy approach may be needed to adequately capture the physical features of the system to the pulse injection.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2507677
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