METHODS FOR CALCULATION OF SELF-SHIELDED CROSS SECTIONS OF FULLY CERAMIC MICRO-ENCAPSULATED FUEL DOUBLE HETEROGENEOUS SYSTEM

Fully ceramic micro-encapsulated (FCM) fuel is a kind of fuel that employs tri-structural isotropic (TRISO) particles to enhance safety. The FCM fuel assembly is a double heterogeneous system. The conventional self-shielding calculation methods cannot treat the DH effect. In this paper, three method...

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Main Authors: He Qingming, Yin Wen, Liu Zhouyu, Zu Tiejun, Cao Liangzhi, Wu Hongchun
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:EPJ Web of Conferences
Subjects:
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2021/01/epjconf_physor2020_03012.pdf
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spelling doaj-c2c7eb4de4bd45298187330e4f53ce362021-08-03T00:15:56ZengEDP SciencesEPJ Web of Conferences2100-014X2021-01-012470301210.1051/epjconf/202124703012epjconf_physor2020_03012METHODS FOR CALCULATION OF SELF-SHIELDED CROSS SECTIONS OF FULLY CERAMIC MICRO-ENCAPSULATED FUEL DOUBLE HETEROGENEOUS SYSTEMHe QingmingYin WenLiu ZhouyuZu TiejunCao LiangzhiWu HongchunFully ceramic micro-encapsulated (FCM) fuel is a kind of fuel that employs tri-structural isotropic (TRISO) particles to enhance safety. The FCM fuel assembly is a double heterogeneous system. The conventional self-shielding calculation methods cannot treat the DH effect. In this paper, three methods based on equivalent homogenization of the TRISO particle and the matrix are studied and compared: the hyper-fine energy group cross sections (XSs) homogenization based hyper-fine energy group method (HHM), the hyper-fine energy group XSs homogenization based subgroup method (HSM) and the subgroup XSs homogenization based subgroup method (SSM). These methods are implemented in a high-fidelity neutronics code NECP-X. Numerical results show that these methods are able to treat the double heterogeneity of the FCM fuel. The precision of the HHM and HSM is higher than that of the SSM.https://www.epj-conferences.org/articles/epjconf/pdf/2021/01/epjconf_physor2020_03012.pdffcm fueldouble heterogeneityhyper-fine energy group methodsubgroup methodnecp-x
collection DOAJ
language English
format Article
sources DOAJ
author He Qingming
Yin Wen
Liu Zhouyu
Zu Tiejun
Cao Liangzhi
Wu Hongchun
spellingShingle He Qingming
Yin Wen
Liu Zhouyu
Zu Tiejun
Cao Liangzhi
Wu Hongchun
METHODS FOR CALCULATION OF SELF-SHIELDED CROSS SECTIONS OF FULLY CERAMIC MICRO-ENCAPSULATED FUEL DOUBLE HETEROGENEOUS SYSTEM
EPJ Web of Conferences
fcm fuel
double heterogeneity
hyper-fine energy group method
subgroup method
necp-x
author_facet He Qingming
Yin Wen
Liu Zhouyu
Zu Tiejun
Cao Liangzhi
Wu Hongchun
author_sort He Qingming
title METHODS FOR CALCULATION OF SELF-SHIELDED CROSS SECTIONS OF FULLY CERAMIC MICRO-ENCAPSULATED FUEL DOUBLE HETEROGENEOUS SYSTEM
title_short METHODS FOR CALCULATION OF SELF-SHIELDED CROSS SECTIONS OF FULLY CERAMIC MICRO-ENCAPSULATED FUEL DOUBLE HETEROGENEOUS SYSTEM
title_full METHODS FOR CALCULATION OF SELF-SHIELDED CROSS SECTIONS OF FULLY CERAMIC MICRO-ENCAPSULATED FUEL DOUBLE HETEROGENEOUS SYSTEM
title_fullStr METHODS FOR CALCULATION OF SELF-SHIELDED CROSS SECTIONS OF FULLY CERAMIC MICRO-ENCAPSULATED FUEL DOUBLE HETEROGENEOUS SYSTEM
title_full_unstemmed METHODS FOR CALCULATION OF SELF-SHIELDED CROSS SECTIONS OF FULLY CERAMIC MICRO-ENCAPSULATED FUEL DOUBLE HETEROGENEOUS SYSTEM
title_sort methods for calculation of self-shielded cross sections of fully ceramic micro-encapsulated fuel double heterogeneous system
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2021-01-01
description Fully ceramic micro-encapsulated (FCM) fuel is a kind of fuel that employs tri-structural isotropic (TRISO) particles to enhance safety. The FCM fuel assembly is a double heterogeneous system. The conventional self-shielding calculation methods cannot treat the DH effect. In this paper, three methods based on equivalent homogenization of the TRISO particle and the matrix are studied and compared: the hyper-fine energy group cross sections (XSs) homogenization based hyper-fine energy group method (HHM), the hyper-fine energy group XSs homogenization based subgroup method (HSM) and the subgroup XSs homogenization based subgroup method (SSM). These methods are implemented in a high-fidelity neutronics code NECP-X. Numerical results show that these methods are able to treat the double heterogeneity of the FCM fuel. The precision of the HHM and HSM is higher than that of the SSM.
topic fcm fuel
double heterogeneity
hyper-fine energy group method
subgroup method
necp-x
url https://www.epj-conferences.org/articles/epjconf/pdf/2021/01/epjconf_physor2020_03012.pdf
work_keys_str_mv AT heqingming methodsforcalculationofselfshieldedcrosssectionsoffullyceramicmicroencapsulatedfueldoubleheterogeneoussystem
AT yinwen methodsforcalculationofselfshieldedcrosssectionsoffullyceramicmicroencapsulatedfueldoubleheterogeneoussystem
AT liuzhouyu methodsforcalculationofselfshieldedcrosssectionsoffullyceramicmicroencapsulatedfueldoubleheterogeneoussystem
AT zutiejun methodsforcalculationofselfshieldedcrosssectionsoffullyceramicmicroencapsulatedfueldoubleheterogeneoussystem
AT caoliangzhi methodsforcalculationofselfshieldedcrosssectionsoffullyceramicmicroencapsulatedfueldoubleheterogeneoussystem
AT wuhongchun methodsforcalculationofselfshieldedcrosssectionsoffullyceramicmicroencapsulatedfueldoubleheterogeneoussystem
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