The point kinetic model is a useful tool in both direct and inverse applications in reactor physics. Among the integral parameters introduced in the model, the effective mean prompt neutron generation time, in short effective neutron lifetime , determines the time scale of the evolution of the neutron population. The estimation of this parameter is usually carried out as the ratio of the total neutron importance within the system and the total importance generated by fission per unit time, as consistent with the standard derivation of the point kinetic equations. The values is thus dependent on the energy model used for the evaluation of both neutron flux and importance. In this work, the effect of the energy structure on lambda is investigated, showing that relevant effects, especially for the estimation of the fundamental time constant, are observed when dealing with fewgroup problems. The analysis is carried out analytically for simple configurations and using numerical codes for more realistic systems.

Energy models for the evaluation of the effective neutron lifetime / Dulla, S.; Ravetto, P.; Saracco, P.; Borreani, W.; Carta, M.; Fabrizio, V.; Peluso, V.. - ELETTRONICO. - (2018). (Intervento presentato al convegno International Conference PHYSOR 2018 tenutosi a Cancun nel April 22-26).

Energy models for the evaluation of the effective neutron lifetime

S. Dulla;P. Ravetto;
2018

Abstract

The point kinetic model is a useful tool in both direct and inverse applications in reactor physics. Among the integral parameters introduced in the model, the effective mean prompt neutron generation time, in short effective neutron lifetime , determines the time scale of the evolution of the neutron population. The estimation of this parameter is usually carried out as the ratio of the total neutron importance within the system and the total importance generated by fission per unit time, as consistent with the standard derivation of the point kinetic equations. The values is thus dependent on the energy model used for the evaluation of both neutron flux and importance. In this work, the effect of the energy structure on lambda is investigated, showing that relevant effects, especially for the estimation of the fundamental time constant, are observed when dealing with fewgroup problems. The analysis is carried out analytically for simple configurations and using numerical codes for more realistic systems.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2742818
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