The Stress and Reliability Analysis of HTR’s Graphite Component

The high temperature gas cooled reactor (HTR) is developing rapidly toward a modular, compact, and integral direction. As the main structure material, graphite plays a very important role in HTR engineering, and the reliability of graphite component has a close relationship with the integrity of rea...

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Main Authors: Xiang Fang, Haitao Wang, Suyuan Yu
Format: Article
Language:English
Published: Hindawi Limited 2014-01-01
Series:Science and Technology of Nuclear Installations
Online Access:http://dx.doi.org/10.1155/2014/964848
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spelling doaj-825104951fd547708a35f30e92393c8c2020-11-24T23:04:53ZengHindawi LimitedScience and Technology of Nuclear Installations1687-60751687-60832014-01-01201410.1155/2014/964848964848The Stress and Reliability Analysis of HTR’s Graphite ComponentXiang Fang0Haitao Wang1Suyuan Yu2Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaInstitute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaInstitute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, ChinaThe high temperature gas cooled reactor (HTR) is developing rapidly toward a modular, compact, and integral direction. As the main structure material, graphite plays a very important role in HTR engineering, and the reliability of graphite component has a close relationship with the integrity of reactor core. The graphite components are subjected to high temperature and fast neutron irradiation simultaneously during normal operation of the reactor. With the stress accumulation induced by high temperature and irradiation, the failure risk of graphite components increases constantly. Therefore it is necessary to study and simulate the mechanical behavior of graphite component under in-core working conditions and forecast the internal stress accumulation history and the variation of reliability. The work of this paper focuses on the mechanical analysis of pebble-bed type HTR's graphite brick. The analysis process is comprised of two procedures, stress analysis and reliability analysis. Three different creep models and two different reliability models are reviewed and taken into account in simulation. The stress and failure probability calculation results are obtained and discussed. The results gained with various models are highly consistent, and the discrepancies are acceptable.http://dx.doi.org/10.1155/2014/964848
collection DOAJ
language English
format Article
sources DOAJ
author Xiang Fang
Haitao Wang
Suyuan Yu
spellingShingle Xiang Fang
Haitao Wang
Suyuan Yu
The Stress and Reliability Analysis of HTR’s Graphite Component
Science and Technology of Nuclear Installations
author_facet Xiang Fang
Haitao Wang
Suyuan Yu
author_sort Xiang Fang
title The Stress and Reliability Analysis of HTR’s Graphite Component
title_short The Stress and Reliability Analysis of HTR’s Graphite Component
title_full The Stress and Reliability Analysis of HTR’s Graphite Component
title_fullStr The Stress and Reliability Analysis of HTR’s Graphite Component
title_full_unstemmed The Stress and Reliability Analysis of HTR’s Graphite Component
title_sort stress and reliability analysis of htr’s graphite component
publisher Hindawi Limited
series Science and Technology of Nuclear Installations
issn 1687-6075
1687-6083
publishDate 2014-01-01
description The high temperature gas cooled reactor (HTR) is developing rapidly toward a modular, compact, and integral direction. As the main structure material, graphite plays a very important role in HTR engineering, and the reliability of graphite component has a close relationship with the integrity of reactor core. The graphite components are subjected to high temperature and fast neutron irradiation simultaneously during normal operation of the reactor. With the stress accumulation induced by high temperature and irradiation, the failure risk of graphite components increases constantly. Therefore it is necessary to study and simulate the mechanical behavior of graphite component under in-core working conditions and forecast the internal stress accumulation history and the variation of reliability. The work of this paper focuses on the mechanical analysis of pebble-bed type HTR's graphite brick. The analysis process is comprised of two procedures, stress analysis and reliability analysis. Three different creep models and two different reliability models are reviewed and taken into account in simulation. The stress and failure probability calculation results are obtained and discussed. The results gained with various models are highly consistent, and the discrepancies are acceptable.
url http://dx.doi.org/10.1155/2014/964848
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