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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Performance analysis of TRISO coated fuel particles with kernel migration
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Performance analysis of TRISO coated fuel particles with kernel migration

机译:带核迁移的TRISO涂层燃料颗粒的性能分析

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摘要

High temperature reactors (HTRs) are among the candidates of the possible next generation nuclear plant. HTRs are expected to offer attractive features such as inherent safety, low cost of electricity generation, and short construction period. The safety performance of high temperature gas cooled reactors mainly relies on the quality and integrity of the coated fuel particles. One of the possible failure mechanisms for TRISO coated fuel particles is kernel migration, in which the fuel kernel migrates through the buffer layer due to the overall high temperature gradient and the carbon monoxide formation. In this study, thermal and mechanical performances of a coated fuel particle with a migrated kernel are analyzed by the finite element technique. Calculations are performed for two different operating conditions represented by two different surface temperatures. Similar analyses are also carried out for a nominal particle without kernel migration for comparison. Temperatures and stress distributions are calculated and failure probabilities of the coated fuel particle are obtained based on the Weibull statistics. Further comparison is made in terms of the failure probability considering a coated fuel particle whose inner pyrolitic carbon layer is defective or already failed. Furthermore, stress distributions for the particle with kernel migration through the inner pyrolytic carbon layer has been obtained. Calculated temperature distributions, maximum stress values, and failure probabilities are reported to assess the influence of kernel migration on coated fuel particle behavior. Results show that high temperature operation, high burnup, and excessive temperature gradient on the fuel particle can lead to fuel failure. The pressure vessel failure is generally observed well before the failure by the kernel migration. In fact, these failure modes are interrelated and affect each other. (C) 2007 Elsevier B.V. All rights reserved.
机译:高温反应堆(HTR)是可能的下一代核电站的候选者之一。高温气冷堆有望提供吸引人的功能,例如固有的安全性,较低的发电成本和较短的工期。高温气冷堆的安全性能主要取决于被覆燃料颗粒的质量和完整性。 TRISO涂层燃料颗粒的可能失效机理之一是核迁移,其中由于总体高温梯度和一氧化碳的形成,燃料核迁移通过缓冲层。在这项研究中,通过有限元技术分析了带有迁移核的涂层燃料颗粒的热性能和机械性能。对于由两个不同的表面温度表示的两个不同的运行条件进行计算。对于没有内核迁移的标称颗粒也进行了类似分析,以进行比较。基于威布尔统计,计算温度和应力分布,并获得涂层燃料颗粒的失效概率。考虑到内部热解碳层有缺陷或已经失效的涂覆燃料颗粒,根据失效概率进行了进一步比较。此外,已经获得了具有通过内部热解碳层的核迁移的颗粒的应力分布。报告了计算的温度分布,最大应力值和失效概率,以评估籽粒迁移对涂层燃料颗粒行为的影响。结果表明,高温运行,高燃耗以及燃料颗粒上的过度温度梯度会导致燃料故障。压力容器故障通常在内核迁移之前就已经观察到。实际上,这些故障模式是相互关联且相互影响的。 (C)2007 Elsevier B.V.保留所有权利。

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