An Integral Numerical Analysis of Impact of a Commercial Aircraft on Nuclear Containment

After the September 11 attack, the resistant capability of containments against aircraft impacts is required to be assessed for newly constructed nuclear power plants (NPPs). In this paper, the crash of a commercial airplane Boeing 767-200ER on the reinforced concrete containment building of an NPP...

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Main Authors: Xiaoxin Wang, Qin Zhou, Li Shi, Haitao Wang, Xiaotian Li
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Science and Technology of Nuclear Installations
Online Access:http://dx.doi.org/10.1155/2019/9417954
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author Xiaoxin Wang
Qin Zhou
Li Shi
Haitao Wang
Xiaotian Li
author_facet Xiaoxin Wang
Qin Zhou
Li Shi
Haitao Wang
Xiaotian Li
author_sort Xiaoxin Wang
collection DOAJ
description After the September 11 attack, the resistant capability of containments against aircraft impacts is required to be assessed for newly constructed nuclear power plants (NPPs). In this paper, the crash of a commercial airplane Boeing 767-200ER on the reinforced concrete containment building of an NPP is analyzed using the missile-target interaction method. Two plane models with the same total weight but different fuel distribution are analyzed. The force-time history obtained by FEA (finite element analysis) is compared with the one calculated by the Riera function. In the integral analysis, the mesh sensitivity of the reinforced concrete containment model is studied, and recommendations are provided on the modelling of containment. The impact phenomenon and damage on the containment are investigated through the validated model. The fuel distribution in the aircraft is found to have strong influence on the damage of the containment, which indicates that the load distribution in the transverse direction is critical in the analysis of aircraft impact. The classic load-time function analysis is unable to incorporate this factor and may not be adequate to provide satisfactory results. For this reason, the application of an integral analysis is advantageous in the safety assessment of aircraft impact.
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series Science and Technology of Nuclear Installations
spelling doaj-art-c0b8bcf856da4bfca0290f46f697b4e02025-02-03T05:44:50ZengWileyScience and Technology of Nuclear Installations1687-60751687-60832019-01-01201910.1155/2019/94179549417954An Integral Numerical Analysis of Impact of a Commercial Aircraft on Nuclear ContainmentXiaoxin Wang0Qin Zhou1Li Shi2Haitao Wang3Xiaotian Li4Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Tsinghua University, Key Laboratory of Advanced Reactor Engineering and Safety of Ministry of Education, Beijing 100084, ChinaInstitute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Tsinghua University, Key Laboratory of Advanced Reactor Engineering and Safety of Ministry of Education, Beijing 100084, ChinaInstitute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Tsinghua University, Key Laboratory of Advanced Reactor Engineering and Safety of Ministry of Education, Beijing 100084, ChinaInstitute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Tsinghua University, Key Laboratory of Advanced Reactor Engineering and Safety of Ministry of Education, Beijing 100084, ChinaInstitute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Tsinghua University, Key Laboratory of Advanced Reactor Engineering and Safety of Ministry of Education, Beijing 100084, ChinaAfter the September 11 attack, the resistant capability of containments against aircraft impacts is required to be assessed for newly constructed nuclear power plants (NPPs). In this paper, the crash of a commercial airplane Boeing 767-200ER on the reinforced concrete containment building of an NPP is analyzed using the missile-target interaction method. Two plane models with the same total weight but different fuel distribution are analyzed. The force-time history obtained by FEA (finite element analysis) is compared with the one calculated by the Riera function. In the integral analysis, the mesh sensitivity of the reinforced concrete containment model is studied, and recommendations are provided on the modelling of containment. The impact phenomenon and damage on the containment are investigated through the validated model. The fuel distribution in the aircraft is found to have strong influence on the damage of the containment, which indicates that the load distribution in the transverse direction is critical in the analysis of aircraft impact. The classic load-time function analysis is unable to incorporate this factor and may not be adequate to provide satisfactory results. For this reason, the application of an integral analysis is advantageous in the safety assessment of aircraft impact.http://dx.doi.org/10.1155/2019/9417954
spellingShingle Xiaoxin Wang
Qin Zhou
Li Shi
Haitao Wang
Xiaotian Li
An Integral Numerical Analysis of Impact of a Commercial Aircraft on Nuclear Containment
Science and Technology of Nuclear Installations
title An Integral Numerical Analysis of Impact of a Commercial Aircraft on Nuclear Containment
title_full An Integral Numerical Analysis of Impact of a Commercial Aircraft on Nuclear Containment
title_fullStr An Integral Numerical Analysis of Impact of a Commercial Aircraft on Nuclear Containment
title_full_unstemmed An Integral Numerical Analysis of Impact of a Commercial Aircraft on Nuclear Containment
title_short An Integral Numerical Analysis of Impact of a Commercial Aircraft on Nuclear Containment
title_sort integral numerical analysis of impact of a commercial aircraft on nuclear containment
url http://dx.doi.org/10.1155/2019/9417954
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