QUALIFICATION OF ANC9 GENERIC INSERT METHODOLOGY (GIM)
Discrete burnable poisons like the Wet Annular Burnable Absorber and Pyrex have been used in PWR core to improve core power distribution and provide more negative moderator temperature coefficient. The burnable absorber in the burnable poison rods burns fast and is completely gone after one cycle ex...
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doaj-e39ad81aa2d747a5997c72d61a622ca12021-08-03T00:15:56ZengEDP SciencesEPJ Web of Conferences2100-014X2021-01-012470200310.1051/epjconf/202124702003epjconf_physor2020_02003QUALIFICATION OF ANC9 GENERIC INSERT METHODOLOGY (GIM)Zhang BaochengIvanov Boyan D.Hoskins KevinHuria HarishRebello Andre Luiz PereiraDiscrete burnable poisons like the Wet Annular Burnable Absorber and Pyrex have been used in PWR core to improve core power distribution and provide more negative moderator temperature coefficient. The burnable absorber in the burnable poison rods burns fast and is completely gone after one cycle exposure in the core. Traditionally, the burnable poison rods are designed to be part of the fuel assembly. They are burned together with the fuel in the first loading cycle and discharged after one cycle. In recent years, different insertion scenarios of the burnable poison rods have been introduced in the PWR plants operation to improve the fuel performance, for instance, fresh burnable poison rods are inserted into a burned assembly; burned burnable poison rods stay in the original assembly or are replaced in a different assembly. A Generic Insert Methodology [1] was developed in Westinghouse and implemented in NEXUS/ANC9 code system. With this new methodology, ANC9 is able to follow the assembly history and model all types of absorber insert components for all kinds of insertion scenarios. An extensive methods validation and qualification effort has been completed by modeling different insertion cases. This paper provides details of the qualification cases along with the analysis of the results.https://www.epj-conferences.org/articles/epjconf/pdf/2021/01/epjconf_physor2020_02003.pdfgimnexusanc9depletionrelative strength |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhang Baocheng Ivanov Boyan D. Hoskins Kevin Huria Harish Rebello Andre Luiz Pereira |
spellingShingle |
Zhang Baocheng Ivanov Boyan D. Hoskins Kevin Huria Harish Rebello Andre Luiz Pereira QUALIFICATION OF ANC9 GENERIC INSERT METHODOLOGY (GIM) EPJ Web of Conferences gim nexus anc9 depletion relative strength |
author_facet |
Zhang Baocheng Ivanov Boyan D. Hoskins Kevin Huria Harish Rebello Andre Luiz Pereira |
author_sort |
Zhang Baocheng |
title |
QUALIFICATION OF ANC9 GENERIC INSERT METHODOLOGY (GIM) |
title_short |
QUALIFICATION OF ANC9 GENERIC INSERT METHODOLOGY (GIM) |
title_full |
QUALIFICATION OF ANC9 GENERIC INSERT METHODOLOGY (GIM) |
title_fullStr |
QUALIFICATION OF ANC9 GENERIC INSERT METHODOLOGY (GIM) |
title_full_unstemmed |
QUALIFICATION OF ANC9 GENERIC INSERT METHODOLOGY (GIM) |
title_sort |
qualification of anc9 generic insert methodology (gim) |
publisher |
EDP Sciences |
series |
EPJ Web of Conferences |
issn |
2100-014X |
publishDate |
2021-01-01 |
description |
Discrete burnable poisons like the Wet Annular Burnable Absorber and Pyrex have been used in PWR core to improve core power distribution and provide more negative moderator temperature coefficient. The burnable absorber in the burnable poison rods burns fast and is completely gone after one cycle exposure in the core. Traditionally, the burnable poison rods are designed to be part of the fuel assembly. They are burned together with the fuel in the first loading cycle and discharged after one cycle. In recent years, different insertion scenarios of the burnable poison rods have been introduced in the PWR plants operation to improve the fuel performance, for instance, fresh burnable poison rods are inserted into a burned assembly; burned burnable poison rods stay in the original assembly or are replaced in a different assembly.
A Generic Insert Methodology [1] was developed in Westinghouse and implemented in NEXUS/ANC9 code system. With this new methodology, ANC9 is able to follow the assembly history and model all types of absorber insert components for all kinds of insertion scenarios.
An extensive methods validation and qualification effort has been completed by modeling different insertion cases. This paper provides details of the qualification cases along with the analysis of the results. |
topic |
gim nexus anc9 depletion relative strength |
url |
https://www.epj-conferences.org/articles/epjconf/pdf/2021/01/epjconf_physor2020_02003.pdf |
work_keys_str_mv |
AT zhangbaocheng qualificationofanc9genericinsertmethodologygim AT ivanovboyand qualificationofanc9genericinsertmethodologygim AT hoskinskevin qualificationofanc9genericinsertmethodologygim AT huriaharish qualificationofanc9genericinsertmethodologygim AT rebelloandreluizpereira qualificationofanc9genericinsertmethodologygim |
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