p Round robin analysis to investigate sensitivity of analysis results to finite element elastic-plastic analysis variables for nuclear safety class 1 components under severe seismic load

  • Kim, Jun-Young
  • Lee, Jong Min
  • Park, Jun Geun
  • Kim, Jong-Sung
  • Cho, Min Ki
  • ... Kim, Yun-Jae
  • 외 6명
Citations

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2

초록

As a part of round robin analysis to develop a finite element elastic-plastic seismic analysis procedure for nuclear safety class 1 components, a series of parametric analyses was carried out on the simulated pressurizer surge line system model to investigate sensitivity of the analysis results to finite element analysis variables. The analysis on the surge line system model considered dynamic effect due to the seismic load corresponding to PGA 0.6 g and elastic-plastic material behavior based on the Chaboche combined hardening model. From the parametric analysis results, it was found that strains such as accumulated equivalent plastic strain and equivalent plastic strain are more sensitive to the analysis variables than von Mises effect stress. The parametric analysis results also identified that finite element density and ovalization option in the elbow elements have more significant effect on the analysis results than the other variables. (c) 2021 Korean Nuclear Society, Published by Elsevier Korea LLC. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

키워드

Round robin analysisFinite element elastic-plastic analysisSevere seismic loadVariable sensitivityNuclear safety class 1 components
제목
p Round robin analysis to investigate sensitivity of analysis results to finite element elastic-plastic analysis variables for nuclear safety class 1 components under severe seismic load
저자
Kim, Jun-YoungLee, Jong MinPark, Jun GeunKim, Jong-SungCho, Min KiAhn, Sang WonKoo, Gyeong-HoiLee, Bong HeeHuh, Nam-SuKim, Yun-JaeKim, Jong-InNam, Il-Kwun
DOI
10.1016/j.net.2021.07.009
발행일
2022-01
유형
Article
저널명
Nuclear Engineering and Technology
54
1
페이지
343 ~ 356