处理堆芯快速瞬变的可靠性评估方法

N.H. Badrun , Nandita Talukder , Nosrat Sharmin
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引用次数: 0

摘要

为了提高新型先进反应堆的安全性,有必要采用基于可靠性的热液系统设计方法。本文采用基于“荷载超过容量”的结构可靠性分析方法,根据极限状态函数评估系统的失效概率,并通过不同的可靠性评估方法对极限状态函数违反进行概率度量。在这里,我们重点研究了受到反应性启动的快速瞬变的TRIGA岩心。首先采用响应面设计法逼近真实失效面,然后进行FORM-SORM分析。但是,由于失效面的非线性,FORM-SORM的实现存在明显的不稳定性。随后,采用蒙特卡罗方差缩减技术的定向模拟方法来说明这种快速瞬态。在调查中,考虑了几个方面,在每种情况下,定向模拟方法都显示出它能够给出有效的结果。因此,该方法可作为解决任何反应堆设计和分析中的快速瞬态问题的一种可行和有效的方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability assessment methods to address fast transient of reactor core

In order to enhance the safety of new advanced reactors, reliability based approach to the design of thermal hydraulic system becomes necessary. In this work, “load exceeds capacity” based approach of structural reliability analysis is employed and probability of failure of the system was then assessed in terms of a limit state function while probabilistic measure of limit state function violation is performed through different methods of reliability assessment. Here, we have focused on TRIGA core subjected to reactivity initiated fast transient. Initially, response surface design method has been used for approximating true failure surface, and then FORM-SORM analysis has been carried out. But, due to non linearity involved with failure surface, there have been noticed instability in FORM-SORM implementation. Later, directional simulation approach of Monte Carlo variance reduction techniques has been employed to illustrate such fast transient. In the investigation, there have been several aspects considered and in each case directional simulation method has shown its ability to give valid results. Hence, the method could be recommended as a viable and efficient scheme to solve even fast transient problem in design and analysis of any reactor.

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