SIMULATION OF THE NUCLEAR-REACTOR ACTIVE-ZONE ELEMENTS WITH THICK ROTATING LAYER OF MICRO-PARTICLE FUEL FOR RADIOACTIVE WASTE TRANSMUTATION

The effective transmutation of radioactive isotopes into the stable ones with the use of neutrons requires the neutron high-flux and the spectra with significant part of fast and resonance neutrons. It is advisable to alternate a range of specified-duration irradiation sessions with revamping the co...

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Main Author: V. V. Sorokin
Format: Article
Language:Russian
Published: Belarusian National Technical University 2015-06-01
Series:Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
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Online Access:https://energy.bntu.by/jour/article/view/858
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author V. V. Sorokin
author_facet V. V. Sorokin
author_sort V. V. Sorokin
collection DOAJ
description The effective transmutation of radioactive isotopes into the stable ones with the use of neutrons requires the neutron high-flux and the spectra with significant part of fast and resonance neutrons. It is advisable to alternate a range of specified-duration irradiation sessions with revamping the composition of waste. The depleted fuel of the commercial reactor comprises near 1 % of such isotopes of their individual mass in the batch loading which amounts to several tens of kilograms. The article considers a perspective nuclear reactor for radioactive waste transmutation as regards its design, thermal physics and hydrodynamics. Mobile microparticles of the fuel build up the active zone of the reactor and form a steady dense ringshaped layer. The layer rotates within immovable vortex chamber using the energy of the coolant, i.e. water. The micro particles cool down with the coolant unmediated.The  formulaic  valuation  of  the  device  capacity  with  water  under  pressure  comes to 1–5 MW per 1 liter of the layer. The condition of avoided boiling sets the most restrictive limitations  to  the  capacity.  The  bulk  of  the  layer  constricts  to  tens  of  liters  inasmuch as enlarging the chamber dimensions reduces the rotary acceleration and the force confining the fuel micro-particles on the free surface of the layer. The author offers and substantiates with calculations the active zone composed of several layers or a layer with a large ratio of the volume to the surface area for achieving criticality of nuclear fuel load with limitations on enrichment. The vortex chambers in case of the active zone of several layers can have the joint coolant exscapes along the axis. Implementation of the chambers with reverse vortices in composite active zones with joint escapes allows reducing the flow rotation below the vortex reactor along the coolant course.
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spelling doaj.art-d366dd9bf230478ba5c14c1be523c1252023-03-13T07:41:49ZrusBelarusian National Technical UniversityIzvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika1029-74482414-03412015-06-01027280840SIMULATION OF THE NUCLEAR-REACTOR ACTIVE-ZONE ELEMENTS WITH THICK ROTATING LAYER OF MICRO-PARTICLE FUEL FOR RADIOACTIVE WASTE TRANSMUTATIONV. V. Sorokin0Белорусский национальный технический университетThe effective transmutation of radioactive isotopes into the stable ones with the use of neutrons requires the neutron high-flux and the spectra with significant part of fast and resonance neutrons. It is advisable to alternate a range of specified-duration irradiation sessions with revamping the composition of waste. The depleted fuel of the commercial reactor comprises near 1 % of such isotopes of their individual mass in the batch loading which amounts to several tens of kilograms. The article considers a perspective nuclear reactor for radioactive waste transmutation as regards its design, thermal physics and hydrodynamics. Mobile microparticles of the fuel build up the active zone of the reactor and form a steady dense ringshaped layer. The layer rotates within immovable vortex chamber using the energy of the coolant, i.e. water. The micro particles cool down with the coolant unmediated.The  formulaic  valuation  of  the  device  capacity  with  water  under  pressure  comes to 1–5 MW per 1 liter of the layer. The condition of avoided boiling sets the most restrictive limitations  to  the  capacity.  The  bulk  of  the  layer  constricts  to  tens  of  liters  inasmuch as enlarging the chamber dimensions reduces the rotary acceleration and the force confining the fuel micro-particles on the free surface of the layer. The author offers and substantiates with calculations the active zone composed of several layers or a layer with a large ratio of the volume to the surface area for achieving criticality of nuclear fuel load with limitations on enrichment. The vortex chambers in case of the active zone of several layers can have the joint coolant exscapes along the axis. Implementation of the chambers with reverse vortices in composite active zones with joint escapes allows reducing the flow rotation below the vortex reactor along the coolant course.https://energy.bntu.by/jour/article/view/858ядерный реакторслой микротвэловмоделирование элементоврадиоактивные отходы
spellingShingle V. V. Sorokin
SIMULATION OF THE NUCLEAR-REACTOR ACTIVE-ZONE ELEMENTS WITH THICK ROTATING LAYER OF MICRO-PARTICLE FUEL FOR RADIOACTIVE WASTE TRANSMUTATION
Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
ядерный реактор
слой микротвэлов
моделирование элементов
радиоактивные отходы
title SIMULATION OF THE NUCLEAR-REACTOR ACTIVE-ZONE ELEMENTS WITH THICK ROTATING LAYER OF MICRO-PARTICLE FUEL FOR RADIOACTIVE WASTE TRANSMUTATION
title_full SIMULATION OF THE NUCLEAR-REACTOR ACTIVE-ZONE ELEMENTS WITH THICK ROTATING LAYER OF MICRO-PARTICLE FUEL FOR RADIOACTIVE WASTE TRANSMUTATION
title_fullStr SIMULATION OF THE NUCLEAR-REACTOR ACTIVE-ZONE ELEMENTS WITH THICK ROTATING LAYER OF MICRO-PARTICLE FUEL FOR RADIOACTIVE WASTE TRANSMUTATION
title_full_unstemmed SIMULATION OF THE NUCLEAR-REACTOR ACTIVE-ZONE ELEMENTS WITH THICK ROTATING LAYER OF MICRO-PARTICLE FUEL FOR RADIOACTIVE WASTE TRANSMUTATION
title_short SIMULATION OF THE NUCLEAR-REACTOR ACTIVE-ZONE ELEMENTS WITH THICK ROTATING LAYER OF MICRO-PARTICLE FUEL FOR RADIOACTIVE WASTE TRANSMUTATION
title_sort simulation of the nuclear reactor active zone elements with thick rotating layer of micro particle fuel for radioactive waste transmutation
topic ядерный реактор
слой микротвэлов
моделирование элементов
радиоактивные отходы
url https://energy.bntu.by/jour/article/view/858
work_keys_str_mv AT vvsorokin simulationofthenuclearreactoractivezoneelementswiththickrotatinglayerofmicroparticlefuelforradioactivewastetransmutation