Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференций › статья в сборнике материалов конференции › научная
External Neutron Source for Research Reactor Based on Linear Accelerator and Beryllium Target. / Struev, V.P.; Bogdanov, A.A.; Golovkina, A.G.; Kiselev, Yu.V.; Kudinovich, I.V.; Laikin, A.I.; Rubanov, S.M.
Proceedings of 5th Int. Particle Accelerator Conference (IPAC), Dresden, Germany. 2014. стр. 754-756.Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференций › статья в сборнике материалов конференции › научная
}
TY - GEN
T1 - External Neutron Source for Research Reactor Based on Linear Accelerator and Beryllium Target
AU - Struev, V.P.
AU - Bogdanov, A.A.
AU - Golovkina, A.G.
AU - Kiselev, Yu.V.
AU - Kudinovich, I.V.
AU - Laikin, A.I.
AU - Rubanov, S.M.
PY - 2014
Y1 - 2014
N2 - Nuclear power plant based on accelerator driven subcritical reactor (ADSR) is considered. Such systems demonstrate higher safety because the fission proceeds in subcritical core and necessary neutron flux is reached with external neutrons generated in target of heavy nuclides. In order to efficiently use ADSR for energy production, it’s needed the total power, generated in the reactor, to be greater than power inputs for charged particles acceleration. The plant driven by middle-energy accelerator, which is cheaper than high-energy accelerators, proposed for these purposes, is considered. So it’s necessary to find other ways to amplify reactor power outputs. Thus, the technical solution to increase power gain of small-sized power plant with a linear proton accelerator (energy 300-400 MeV, average current 5 mA) is proposed. Thermal power up to 300 MW was reached.
AB - Nuclear power plant based on accelerator driven subcritical reactor (ADSR) is considered. Such systems demonstrate higher safety because the fission proceeds in subcritical core and necessary neutron flux is reached with external neutrons generated in target of heavy nuclides. In order to efficiently use ADSR for energy production, it’s needed the total power, generated in the reactor, to be greater than power inputs for charged particles acceleration. The plant driven by middle-energy accelerator, which is cheaper than high-energy accelerators, proposed for these purposes, is considered. So it’s necessary to find other ways to amplify reactor power outputs. Thus, the technical solution to increase power gain of small-sized power plant with a linear proton accelerator (energy 300-400 MeV, average current 5 mA) is proposed. Thermal power up to 300 MW was reached.
M3 - Conference contribution
SN - 9783954501328
SP - 754
EP - 756
BT - Proceedings of 5th Int. Particle Accelerator Conference (IPAC), Dresden, Germany
ER -
ID: 7005760