The Optimization of Radiation Protection in the Design of the High Temperature Reactor-Pebble-Bed Module
The optimization of radiation protection is an important task in both the design and operation of a nuclear power plant. Although this topic has been considerably investigated for pressurized water reactors, there are very few public reports on it for pebble-bed reactors. This paper proposes a routi...
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doaj-73220ad09bd5412fb7e917f1e199c76a2020-11-24T20:45:53ZengHindawi LimitedScience and Technology of Nuclear Installations1687-60751687-60832017-01-01201710.1155/2017/39846033984603The Optimization of Radiation Protection in the Design of the High Temperature Reactor-Pebble-Bed ModuleSida Sun0Hong Li1Sheng Fang2Key Laboratory of Advanced Reactor Engineering and Safety of the Ministry of Education, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaKey Laboratory of Advanced Reactor Engineering and Safety of the Ministry of Education, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaKey Laboratory of Advanced Reactor Engineering and Safety of the Ministry of Education, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaThe optimization of radiation protection is an important task in both the design and operation of a nuclear power plant. Although this topic has been considerably investigated for pressurized water reactors, there are very few public reports on it for pebble-bed reactors. This paper proposes a routine that jointly optimizes the system design and radiation protection of High Temperature Reactor-Pebble-Bed Module (HTR-PM) towards the As Low As Reasonably Achievable (ALARA) principle. A systematic framework is also established for the optimization of radiation protection for pebble-bed reactors. Typical calculations for the radiation protection of radioactivity-related systems are presented to quantitatively evaluate the efficiency of the optimization routine, which achieve 23.3%~90.6% reduction of either dose rate or shielding or both of them. The annual collective doses of different systems are reduced through iterative optimization of the dose rates, designs, maintenance procedures, and work durations and compared against the previous estimates. The comparison demonstrates that the annual collective dose of HTR-PM is reduced from 0.490 man-Sv/a before optimization to 0.445 man-Sv/a after optimization, which complies with the requirements of the Chinese regulatory guide and proves the effectiveness of the proposed routine and framework.http://dx.doi.org/10.1155/2017/3984603 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sida Sun Hong Li Sheng Fang |
spellingShingle |
Sida Sun Hong Li Sheng Fang The Optimization of Radiation Protection in the Design of the High Temperature Reactor-Pebble-Bed Module Science and Technology of Nuclear Installations |
author_facet |
Sida Sun Hong Li Sheng Fang |
author_sort |
Sida Sun |
title |
The Optimization of Radiation Protection in the Design of the High Temperature Reactor-Pebble-Bed Module |
title_short |
The Optimization of Radiation Protection in the Design of the High Temperature Reactor-Pebble-Bed Module |
title_full |
The Optimization of Radiation Protection in the Design of the High Temperature Reactor-Pebble-Bed Module |
title_fullStr |
The Optimization of Radiation Protection in the Design of the High Temperature Reactor-Pebble-Bed Module |
title_full_unstemmed |
The Optimization of Radiation Protection in the Design of the High Temperature Reactor-Pebble-Bed Module |
title_sort |
optimization of radiation protection in the design of the high temperature reactor-pebble-bed module |
publisher |
Hindawi Limited |
series |
Science and Technology of Nuclear Installations |
issn |
1687-6075 1687-6083 |
publishDate |
2017-01-01 |
description |
The optimization of radiation protection is an important task in both the design and operation of a nuclear power plant. Although this topic has been considerably investigated for pressurized water reactors, there are very few public reports on it for pebble-bed reactors. This paper proposes a routine that jointly optimizes the system design and radiation protection of High Temperature Reactor-Pebble-Bed Module (HTR-PM) towards the As Low As Reasonably Achievable (ALARA) principle. A systematic framework is also established for the optimization of radiation protection for pebble-bed reactors. Typical calculations for the radiation protection of radioactivity-related systems are presented to quantitatively evaluate the efficiency of the optimization routine, which achieve 23.3%~90.6% reduction of either dose rate or shielding or both of them. The annual collective doses of different systems are reduced through iterative optimization of the dose rates, designs, maintenance procedures, and work durations and compared against the previous estimates. The comparison demonstrates that the annual collective dose of HTR-PM is reduced from 0.490 man-Sv/a before optimization to 0.445 man-Sv/a after optimization, which complies with the requirements of the Chinese regulatory guide and proves the effectiveness of the proposed routine and framework. |
url |
http://dx.doi.org/10.1155/2017/3984603 |
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