Effects of various types of reflectors on the 99Mo production in the VVER-Ts reactor targets

The effects from introducing various types of reflectors in the VVR-Ts reactor core on the 99Мо production were analyzed. Earlier the effects of only the beryllium reflector on the VVR-Ts reactor core characteristics, such as reactivity margin, neutron flux in experimental channels,...

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Main Authors: Oleg Yu. Kochnov, Pavel A. Danilov
Format: Article
Language:English
Published: National Research Nuclear University (MEPhI) 2020-06-01
Series:Nuclear Energy and Technology
Online Access:https://nucet.pensoft.net/article/54623/download/pdf/
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spelling doaj-121d1fb3044949e4be3bd389d55e01ee2020-11-25T03:35:13ZengNational Research Nuclear University (MEPhI)Nuclear Energy and Technology2452-30382020-06-0162899210.3897/nucet.6.5462354623Effects of various types of reflectors on the 99Mo production in the VVER-Ts reactor targetsOleg Yu. Kochnov0Pavel A. Danilov1JSC “NRFChI n.a. L.Ya. Karpov”Obninsk Institute for Nuclear Power Engineering The effects from introducing various types of reflectors in the VVR-Ts reactor core on the 99Мо production were analyzed. Earlier the effects of only the beryllium reflector on the VVR-Ts reactor core characteristics, such as reactivity margin, neutron flux in experimental channels, and activity of the accumulated 99Мо, were calculated. The calculations are based on a generated precision model of the core which comprises one experimental channel where targets are irradiated for the 99Мо production. The model was built using the SCALE code. The code allows a fairly broad range of calculations to be performed, from criticality estimation to radiological assessment tasks. As the result of the computational analysis of the model, such characteristics were obtained as the effective multiplication factor, the power density in the 99Мо production targets, the neutron flux in the target raw material, and the quantity of the produced 99Мо after 120 hours of irradiation. The data was compared with the results of similar calculations of the VVR-Ts reactor core parameters. Further, the list of the materials used extensively as the reactor core reflector or moderator was formed based on reference literature. A number of models were obtained and analyzed on its basis, in which the water space on the core periphery was substituted for the investigated materials. https://nucet.pensoft.net/article/54623/download/pdf/
collection DOAJ
language English
format Article
sources DOAJ
author Oleg Yu. Kochnov
Pavel A. Danilov
spellingShingle Oleg Yu. Kochnov
Pavel A. Danilov
Effects of various types of reflectors on the 99Mo production in the VVER-Ts reactor targets
Nuclear Energy and Technology
author_facet Oleg Yu. Kochnov
Pavel A. Danilov
author_sort Oleg Yu. Kochnov
title Effects of various types of reflectors on the 99Mo production in the VVER-Ts reactor targets
title_short Effects of various types of reflectors on the 99Mo production in the VVER-Ts reactor targets
title_full Effects of various types of reflectors on the 99Mo production in the VVER-Ts reactor targets
title_fullStr Effects of various types of reflectors on the 99Mo production in the VVER-Ts reactor targets
title_full_unstemmed Effects of various types of reflectors on the 99Mo production in the VVER-Ts reactor targets
title_sort effects of various types of reflectors on the 99mo production in the vver-ts reactor targets
publisher National Research Nuclear University (MEPhI)
series Nuclear Energy and Technology
issn 2452-3038
publishDate 2020-06-01
description The effects from introducing various types of reflectors in the VVR-Ts reactor core on the 99Мо production were analyzed. Earlier the effects of only the beryllium reflector on the VVR-Ts reactor core characteristics, such as reactivity margin, neutron flux in experimental channels, and activity of the accumulated 99Мо, were calculated. The calculations are based on a generated precision model of the core which comprises one experimental channel where targets are irradiated for the 99Мо production. The model was built using the SCALE code. The code allows a fairly broad range of calculations to be performed, from criticality estimation to radiological assessment tasks. As the result of the computational analysis of the model, such characteristics were obtained as the effective multiplication factor, the power density in the 99Мо production targets, the neutron flux in the target raw material, and the quantity of the produced 99Мо after 120 hours of irradiation. The data was compared with the results of similar calculations of the VVR-Ts reactor core parameters. Further, the list of the materials used extensively as the reactor core reflector or moderator was formed based on reference literature. A number of models were obtained and analyzed on its basis, in which the water space on the core periphery was substituted for the investigated materials.
url https://nucet.pensoft.net/article/54623/download/pdf/
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