Optimal Protection of Reactor Hall Under Nuclear Fuel Container Drop Using Simulation Methods

This paper presents of the optimal design of the damping devices cover of reactor hall under impact of nuclear fuel container drop of type TK C30. The finite element idealization of nuclear power plant structure is used in software ANSYS. The steel pipe damper system is proposed for dissipation of t...

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Main Author: Králik Juraj
Format: Article
Language:English
Published: VŠB-Technical University of Ostrava, Faculty of Civil Engineering 2014-12-01
Series:Transactions of the VŠB: Technical University of Ostrava, Civil Engineering Series
Subjects:
Online Access:http://www.degruyter.com/view/j/tvsb.2014.14.issue-2/tvsb-2014-0020/tvsb-2014-0020.xml?format=INT
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author Králik Juraj
author_facet Králik Juraj
author_sort Králik Juraj
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description This paper presents of the optimal design of the damping devices cover of reactor hall under impact of nuclear fuel container drop of type TK C30. The finite element idealization of nuclear power plant structure is used in software ANSYS. The steel pipe damper system is proposed for dissipation of the kinetic energy of the container free fall in comparison with the experimental results. The probabilistic and sensitivity analysis of the damping devices was considered on the base of the simulation methods in program AntHill using the Monte Carlo method.
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spelling doaj.art-0fea8b01c8b448e898213c6576087da92023-05-29T13:15:29ZengVŠB-Technical University of Ostrava, Faculty of Civil EngineeringTransactions of the VŠB: Technical University of Ostrava, Civil Engineering Series1804-48242014-12-01142697810.2478/tvsb-2014-0020tvsb-2014-0020Optimal Protection of Reactor Hall Under Nuclear Fuel Container Drop Using Simulation MethodsKrálik Juraj0Department of structural mechanics, Faculty of Civil Engineering, Slovak University of Technology in Bratislava, Radlinského 11, 813 68 Bratislava, SlovakiaThis paper presents of the optimal design of the damping devices cover of reactor hall under impact of nuclear fuel container drop of type TK C30. The finite element idealization of nuclear power plant structure is used in software ANSYS. The steel pipe damper system is proposed for dissipation of the kinetic energy of the container free fall in comparison with the experimental results. The probabilistic and sensitivity analysis of the damping devices was considered on the base of the simulation methods in program AntHill using the Monte Carlo method.http://www.degruyter.com/view/j/tvsb.2014.14.issue-2/tvsb-2014-0020/tvsb-2014-0020.xml?format=INTProbabilitysensitivitycontainer dropdamping devicesFEMAntHillANSYS
spellingShingle Králik Juraj
Optimal Protection of Reactor Hall Under Nuclear Fuel Container Drop Using Simulation Methods
Transactions of the VŠB: Technical University of Ostrava, Civil Engineering Series
Probability
sensitivity
container drop
damping devices
FEM
AntHill
ANSYS
title Optimal Protection of Reactor Hall Under Nuclear Fuel Container Drop Using Simulation Methods
title_full Optimal Protection of Reactor Hall Under Nuclear Fuel Container Drop Using Simulation Methods
title_fullStr Optimal Protection of Reactor Hall Under Nuclear Fuel Container Drop Using Simulation Methods
title_full_unstemmed Optimal Protection of Reactor Hall Under Nuclear Fuel Container Drop Using Simulation Methods
title_short Optimal Protection of Reactor Hall Under Nuclear Fuel Container Drop Using Simulation Methods
title_sort optimal protection of reactor hall under nuclear fuel container drop using simulation methods
topic Probability
sensitivity
container drop
damping devices
FEM
AntHill
ANSYS
url http://www.degruyter.com/view/j/tvsb.2014.14.issue-2/tvsb-2014-0020/tvsb-2014-0020.xml?format=INT
work_keys_str_mv AT kralikjuraj optimalprotectionofreactorhallundernuclearfuelcontainerdropusingsimulationmethods