首页> 外文期刊>Nuclear Engineering and Design >The individual channel monitoring (ICM) proposal to improve the safety performance of RBMK
【24h】

The individual channel monitoring (ICM) proposal to improve the safety performance of RBMK

机译:个别频道监控(ICM)提案,以改善RBMK的安全性能

获取原文
获取原文并翻译 | 示例
       

摘要

A comprehensive study has been completed in relation to the accident analysis of RBMK with key results documented in three companion papers in the present journal volume. The study also aimed at the comparison between selected accident analysis topics in Light Water Reactors (LWR) and RBMK. The relevance of the Fuel Channel Blockage (FCB) event within the area of accident analysis was confirmed. Owing to the probability of occurrence, also connected with the large number of channels, estimated in the order of 10 2/reactor/year, the FCB is actually part of the Design Basis Accidents (DBA) for the RBMK. In case the FCB is part of the DBA, a noticeable difference occurs in results from safety evaluations between LWR and RBMK: in the latter case, a DBA causes a loss of integrity for the pressure barrier and, though to a limited extent, damaged fuel overpasses such a barrier. The FCB event also causes contamination in reactor cavity and in selected parts of the overall confinement, damage in various graphite blocks and, even excluding the MPTR risk owing to the findings from the second companion paper in this journal volume, mechanical loads on neighbouring fuel channels, graphite stacks and reactor tank that need extensive examination before reactor restart. Therefore, a proposal has been formulated for performing the feasibility analysis for the design of a system denominated ICM (Individual Channel Monitoring). The goal of the ICM is the early detection of the FCB event and the triggering of scram in such a way to prevent pressure tube damage and, definitely, over-passing of the pressure barrier by molten or damaged fuel during a DBA situation. The ICM is based upon the signals of pressure-drop (or flow-rate) and fluid temperature transducers installed in the bottom and the upper parts of the fuel channels, respectively. The performed study shows that steam superheating at fuel channel outlet occurs early after the blockage event and the related temperature signal can be used to cause scram. The availability of sophisticate computational tools including the detailed neutron kinetic model for each core channel, made possible the preliminary conclusion of the study.
机译:已经完成了与RBMK事故分析有关的全面研究,并在本期刊中的三篇同行论文中记录了关键结果。该研究还旨在比较轻水堆(LWR)和RBMK中选定的事故分析主题。确认了事故分析区域内燃料通道堵塞(FCB)事件的相关性。由于发生的可能性(也与大量通道相关),估计约为10 2 /反应器/年,因此FCB实际上是RBMK的设计基础事故(DBA)的一部分。如果FCB是DBA的一部分,则LWR和RBMK之间的安全评估结果会出现显着差异:在后一种情况下,DBA会导致压力屏障的完整性损失,尽管在一定程度上会损坏燃料超越了这样的障碍。 FCB事件还会在反应堆腔室和整个密闭空间的选定部分中造成污染,在各种石墨块中造成损坏,并且由于该日记本中第二张随行文件的发现,甚至还排除了MPTR风险,相邻燃料通道上的机械负载,石墨堆和反应器罐,在重新启动反应器之前需要进行大量检查。因此,已经提出了用于对以ICM(单个通道监视)为系统的设计进行可行性分析的提议。 ICM的目标是尽早发现FCB事件并触发紧急停堆,以防止压力管损坏,并且在DBA情况下绝对防止熔融或损坏的燃料超过压力屏障。 ICM基于分别安装在燃料通道底部和上部的压降(或流量)和流体温度传感器的信号。进行的研究表明,燃料通道出口处的蒸汽过热在阻塞事件发生后较早发生,并且相关的温度信号可用于引起乱堆现象。复杂的计算工具的可用性,包括每个核心通道的详细中子动力学模型,使得该研究的初步结论成为可能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号