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Dosimetric assessment and characterisation of the neutron field around a Howitzer container using a bonner sphere spectometrer, Monte Carlo simulations and the NSDANN and NSDUAZ unfolding codes

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dc.contributor 6207 es_ES
dc.contributor.other https://orcid.org/0000-0002-7081-9084 es_ES
dc.coverage.spatial Global es_ES
dc.creator Barros, Silvia
dc.creator Gallego Díaz, Eduardo
dc.creator Lorente, Alfredo
dc.creator Goncalves, Isabel
dc.creator Vaz, Pedro
dc.creator Vega Carrillo, Héctor René
dc.date.accessioned 2019-03-14T18:19:37Z
dc.date.available 2019-03-14T18:19:37Z
dc.date.issued 2012-12
dc.identifier info:eu-repo/semantics/publishedVersion es_ES
dc.identifier.issn 1742-3406 es_ES
dc.identifier.issn 0144-8420 es_ES
dc.identifier.uri http://localhost/xmlui/handle/20.500.11845/764
dc.identifier.uri https://doi.org/10.48779/dh8a-0j83 es_ES
dc.description.abstract The Neutron Measurements Laboratory at the Nuclear Engineering Department of the Polytechnic University of Madrid consists of a bunker-like room and was built for neutron dosimetry research purposes and measurements. The facility includes a 74-GBq 241Am–Be neutron source placed inside a neutron Howitzer container. The source can be moved to the irradiation or to the storage position. In this work, a Bonner sphere spectrometer (BSS) was used to measure the neutron fluence spectra with the source in both positions. Ambient dose equivalent rates, H *(10), were measured using a calibrated neutron area monitor LB6411 (Berthold). The measured count rates were used as input to the NSDann and NSDUAZ unfolding programs to obtain the neutron fluence spectra and H *(10). Monte Carlo (MC) simulation methods were used to model the system and to calculate the neutron fluence rate and the ambient dose equivalent rate at the measurement points. The comparison between NSDUAZ and NSDann resulted in relative deviations up to 6.87 % in the total neutron fluence rate and 7.18 % in H *(10) values, despite the differences in the shape of the spectra obtained for the irradiation position. Comparing with the measured values, the H *(10) values obtained with the unfolding programs exhibit a maximum relative deviation of 12.19 %. Taking into account the associated uncertainties, MC simulations seem to be in reasonable agreement with measurements. A maximum relative deviation of 15.65 % between computed and measured H *(10) values was obtained. The computed count rates were applied to the unfolding programs to calculate the total neutron fluence rate and a maximum deviation of 12.83 % was obtained between the original values calculated by NSDann. A sensitivity test showed that the NSDann unfolding program is very sensitive to the uncertainties of the BSS count rates. es_ES
dc.language.iso eng es_ES
dc.publisher Oxford Academic es_ES
dc.relation.uri generalPublic es_ES
dc.rights Atribución-NoComercial-CompartirIgual 3.0 Estados Unidos de América *
dc.rights.uri http://creativecommons.org/licenses/by-nc-sa/3.0/us/ *
dc.source Radiation Protection Dosimetry, Vol. 154, No 3, 2012, pp. 346-355 es_ES
dc.subject.classification CIENCIAS FISICO MATEMATICAS Y CIENCIAS DE LA TIERRA [1] es_ES
dc.subject.other neutron dosimetry research es_ES
dc.subject.other Bonner sphere spectrometer (BSS) es_ES
dc.subject.other neutron fluence spectra es_ES
dc.title Dosimetric assessment and characterisation of the neutron field around a Howitzer container using a bonner sphere spectometrer, Monte Carlo simulations and the NSDANN and NSDUAZ unfolding codes es_ES
dc.type info:eu-repo/semantics/article es_ES


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