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Functional reliability analysis of Safety Grade Decay Heat Removal System of Indian 500 MWe PFBR

机译:印度500 MWe PFBR安全等级衰减除热系统的功能可靠性分析

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Passive systems are increasingly deployed in nuclear industry with an objective of increasing reliability and safety of operations with reduced cost. Methods for assessing the reliability of thermal-hydraulic passive systems, that is systems with moving working fluid, address the issues in natural buoyancy-driven flow that could result in a failure to meet the design safety limits under accident scenarios. This is referred as design functional reliability. This paper presents the results of functional reliability analysis carried out for the passive Safety Grade Decay Heat Removal System (SGDHRS) of Indian Prototype Fast Breeder Reactor (PFBR). The analysis is carried out based on the overall approach reported in the Reliability Methods for Passive System (RMPS, European Commission) project. Functional failure probability is calculated using Monte-Carlo method and also with method of moments.
机译:无源系统越来越多地部署在核工业中,目的是以降低的成本提高运行的可靠性和安全性。评估热工被动系统(即工作流体移动的系统)的可靠性的方法解决了自然浮力驱动流中的问题,这些问题可能导致在事故情况下无法达到设计安全极限。这称为设计功能可靠性。本文介绍了印度原型快中子增殖堆(PFBR)的被动安全等级衰变除热系统(SGDHRS)进行的功能可靠性分析的结果。该分析是基于被动系统可靠性方法(RMPS,欧洲委员会)项目中报告的总体方法进行的。使用蒙特卡洛方法以及矩量法计算功能失效概率。

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