Determination of Design Extension Conditions List and Design Optimization of Safety Systems for ADS by Lines of Defenses Method

During the conceptual design phase of an accelerator-driven sub-critical system (ADS), the reliability requirements of safety systems need to be determined for future practical construction to balance the economy performance with the safety performance. In this paper, the design optimization of the...

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Main Authors: Zhao Xu, Lizhi Wang, Ming Jin
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8334530/
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spelling doaj-bb1f5e24ca644325b976b28de95b1b872021-03-29T21:09:56ZengIEEEIEEE Access2169-35362018-01-016207882079410.1109/ACCESS.2018.28253728334530Determination of Design Extension Conditions List and Design Optimization of Safety Systems for ADS by Lines of Defenses MethodZhao Xu0Lizhi Wang1Ming Jin2https://orcid.org/0000-0001-7849-1813Key Laboratory of Neutronics and Radiation Safety, Institute of Nuclear Energy Safety Technology, Chinese Academy of Sciences, Hefei, ChinaKey Laboratory of Neutronics and Radiation Safety, Institute of Nuclear Energy Safety Technology, Chinese Academy of Sciences, Hefei, ChinaKey Laboratory of Neutronics and Radiation Safety, Institute of Nuclear Energy Safety Technology, Chinese Academy of Sciences, Hefei, ChinaDuring the conceptual design phase of an accelerator-driven sub-critical system (ADS), the reliability requirements of safety systems need to be determined for future practical construction to balance the economy performance with the safety performance. In this paper, the design optimization of the safety-related systems reliability for the ADS based on China LEAd-based Research Reactor was performed by applying the lines of defense (LODs) method to this ADS. First, a tentative LOD type, such as a strong line (a LOD) or a medium line (b LOD), was assigned to the main safety related systems. These systems include the accelerator trip system, decay heat removal system, reactor vessel, secondary cooling system isolation, decompression system, emergency diesel engine, and containment systems. Second, the failure of the LODs were combined with initiating events that were identified early, and a preliminary list of design extension conditions (DECs) was obtained. Third, the suitability of the conditions for classification into the design basic condition (DBC) or the DEC and their unacceptable consequences for the DBC or criteria limitation were discussed. Last, the LOD types of safety systems were re-assigned considering the results to optimize the design. The complementary events in the list of DECs are obtained. This paper can provide important references for the construction and operation of future ADSs.https://ieeexplore.ieee.org/document/8334530/Accelerator-driven sub-critical system (ADS)lines of defense (LOD)design extension condition (DEC)
collection DOAJ
language English
format Article
sources DOAJ
author Zhao Xu
Lizhi Wang
Ming Jin
spellingShingle Zhao Xu
Lizhi Wang
Ming Jin
Determination of Design Extension Conditions List and Design Optimization of Safety Systems for ADS by Lines of Defenses Method
IEEE Access
Accelerator-driven sub-critical system (ADS)
lines of defense (LOD)
design extension condition (DEC)
author_facet Zhao Xu
Lizhi Wang
Ming Jin
author_sort Zhao Xu
title Determination of Design Extension Conditions List and Design Optimization of Safety Systems for ADS by Lines of Defenses Method
title_short Determination of Design Extension Conditions List and Design Optimization of Safety Systems for ADS by Lines of Defenses Method
title_full Determination of Design Extension Conditions List and Design Optimization of Safety Systems for ADS by Lines of Defenses Method
title_fullStr Determination of Design Extension Conditions List and Design Optimization of Safety Systems for ADS by Lines of Defenses Method
title_full_unstemmed Determination of Design Extension Conditions List and Design Optimization of Safety Systems for ADS by Lines of Defenses Method
title_sort determination of design extension conditions list and design optimization of safety systems for ads by lines of defenses method
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description During the conceptual design phase of an accelerator-driven sub-critical system (ADS), the reliability requirements of safety systems need to be determined for future practical construction to balance the economy performance with the safety performance. In this paper, the design optimization of the safety-related systems reliability for the ADS based on China LEAd-based Research Reactor was performed by applying the lines of defense (LODs) method to this ADS. First, a tentative LOD type, such as a strong line (a LOD) or a medium line (b LOD), was assigned to the main safety related systems. These systems include the accelerator trip system, decay heat removal system, reactor vessel, secondary cooling system isolation, decompression system, emergency diesel engine, and containment systems. Second, the failure of the LODs were combined with initiating events that were identified early, and a preliminary list of design extension conditions (DECs) was obtained. Third, the suitability of the conditions for classification into the design basic condition (DBC) or the DEC and their unacceptable consequences for the DBC or criteria limitation were discussed. Last, the LOD types of safety systems were re-assigned considering the results to optimize the design. The complementary events in the list of DECs are obtained. This paper can provide important references for the construction and operation of future ADSs.
topic Accelerator-driven sub-critical system (ADS)
lines of defense (LOD)
design extension condition (DEC)
url https://ieeexplore.ieee.org/document/8334530/
work_keys_str_mv AT zhaoxu determinationofdesignextensionconditionslistanddesignoptimizationofsafetysystemsforadsbylinesofdefensesmethod
AT lizhiwang determinationofdesignextensionconditionslistanddesignoptimizationofsafetysystemsforadsbylinesofdefensesmethod
AT mingjin determinationofdesignextensionconditionslistanddesignoptimizationofsafetysystemsforadsbylinesofdefensesmethod
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