Multilevel modeling of diametral creep in pressure tubes of Korean CANDU units

abstract: In this work, we applied a multilevel modeling technique to estimate the diametral creep in the pressure tubes of Korean Canada Deuterium Uranium (CANDU) units. Data accumulated from in-service inspections were used to develop the model. To confirm the strength of the multilevel models, a...

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Main Authors: Gyeong-Geun Lee, Dong-Hyun Ahn, Hyung-Ha Jin, Myung-Ho Song, Jong Yeob Jung
Format: Article
Language:English
Published: Elsevier 2021-12-01
Series:Nuclear Engineering and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1738573321003405
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spelling doaj-6343ea8ec16b4779a9b76120b5650a3d2021-09-17T04:34:28ZengElsevierNuclear Engineering and Technology1738-57332021-12-01531240424051Multilevel modeling of diametral creep in pressure tubes of Korean CANDU unitsGyeong-Geun Lee0Dong-Hyun Ahn1Hyung-Ha Jin2Myung-Ho Song3Jong Yeob Jung4Corresponding author.; Materials Safety Technology Development Division, Korea Atomic Energy Research Institute (KAERI), 111, Daedeok-daero, 989 Beon-gil, Yuseong-gu, Daejeon, 34057, South KoreaMaterials Safety Technology Development Division, Korea Atomic Energy Research Institute (KAERI), 111, Daedeok-daero, 989 Beon-gil, Yuseong-gu, Daejeon, 34057, South KoreaMaterials Safety Technology Development Division, Korea Atomic Energy Research Institute (KAERI), 111, Daedeok-daero, 989 Beon-gil, Yuseong-gu, Daejeon, 34057, South KoreaMaterials Safety Technology Development Division, Korea Atomic Energy Research Institute (KAERI), 111, Daedeok-daero, 989 Beon-gil, Yuseong-gu, Daejeon, 34057, South KoreaMaterials Safety Technology Development Division, Korea Atomic Energy Research Institute (KAERI), 111, Daedeok-daero, 989 Beon-gil, Yuseong-gu, Daejeon, 34057, South Koreaabstract: In this work, we applied a multilevel modeling technique to estimate the diametral creep in the pressure tubes of Korean Canada Deuterium Uranium (CANDU) units. Data accumulated from in-service inspections were used to develop the model. To confirm the strength of the multilevel models, a 2-level multilevel model considering the relationship between channels for a CANDU unit was compared with existing linear models. The multilevel model exhibited a very robust prediction accuracy compared to the linear models with different data pooling methods. A 3-level multilevel model, which considered individual bundles, channels, and units, was also implemented. The influence of the channel installation direction was incorporated into the three-stage multilevel model. For channels that were previously measured, the developed 3-level multilevel model exhibited a very good predictive power, and the prediction interval was very narrow. However, for channels that had never been measured before, the prediction interval widened considerably. This model can be sufficiently improved by the accumulation of more data and can be applied to other CANDU units.http://www.sciencedirect.com/science/article/pii/S1738573321003405CANDUPressure tubeDiametral creepMultilevel modelStatistical modeling
collection DOAJ
language English
format Article
sources DOAJ
author Gyeong-Geun Lee
Dong-Hyun Ahn
Hyung-Ha Jin
Myung-Ho Song
Jong Yeob Jung
spellingShingle Gyeong-Geun Lee
Dong-Hyun Ahn
Hyung-Ha Jin
Myung-Ho Song
Jong Yeob Jung
Multilevel modeling of diametral creep in pressure tubes of Korean CANDU units
Nuclear Engineering and Technology
CANDU
Pressure tube
Diametral creep
Multilevel model
Statistical modeling
author_facet Gyeong-Geun Lee
Dong-Hyun Ahn
Hyung-Ha Jin
Myung-Ho Song
Jong Yeob Jung
author_sort Gyeong-Geun Lee
title Multilevel modeling of diametral creep in pressure tubes of Korean CANDU units
title_short Multilevel modeling of diametral creep in pressure tubes of Korean CANDU units
title_full Multilevel modeling of diametral creep in pressure tubes of Korean CANDU units
title_fullStr Multilevel modeling of diametral creep in pressure tubes of Korean CANDU units
title_full_unstemmed Multilevel modeling of diametral creep in pressure tubes of Korean CANDU units
title_sort multilevel modeling of diametral creep in pressure tubes of korean candu units
publisher Elsevier
series Nuclear Engineering and Technology
issn 1738-5733
publishDate 2021-12-01
description abstract: In this work, we applied a multilevel modeling technique to estimate the diametral creep in the pressure tubes of Korean Canada Deuterium Uranium (CANDU) units. Data accumulated from in-service inspections were used to develop the model. To confirm the strength of the multilevel models, a 2-level multilevel model considering the relationship between channels for a CANDU unit was compared with existing linear models. The multilevel model exhibited a very robust prediction accuracy compared to the linear models with different data pooling methods. A 3-level multilevel model, which considered individual bundles, channels, and units, was also implemented. The influence of the channel installation direction was incorporated into the three-stage multilevel model. For channels that were previously measured, the developed 3-level multilevel model exhibited a very good predictive power, and the prediction interval was very narrow. However, for channels that had never been measured before, the prediction interval widened considerably. This model can be sufficiently improved by the accumulation of more data and can be applied to other CANDU units.
topic CANDU
Pressure tube
Diametral creep
Multilevel model
Statistical modeling
url http://www.sciencedirect.com/science/article/pii/S1738573321003405
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