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Reliability Assessment of 2400 MWth Gas-Cooled Fast Reactor Natural Circulation Decay Heat Removal in Pressurized Situations

机译:可靠性评估2400 MWTH气体冷却的快速反应堆自然循环衰减热除去加压情况

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摘要

As the 2400 MWth gas-cooled fast reactor concept makes use of passive safety features in combination with active safety systems, the question of natural circulation decay heat removal (NCDHR) reliability and performance assessment into the ongoing probabilistic safety assessment in support to the reactor design, named “probabilistic engineering assessment” (PEA), constitutes a challenge. Within the 5th Framework Program for Research and Development (FPRD) of the European Community, a methodology has been developed to evaluate the reliability of passive systems characterized by a moving fluid and whose operation is based on physical principles, such as the natural circulation. This reliability method for passive systems (RMPSs) is based on uncertainties propagation into thermal-hydraulic (T-H) calculations. The aim of this exercise is finally to determine the performance reliability of the DHR system operating in a “passive” mode, taking into account the uncertainties of parameters retained for thermal-hydraulical calculations performed with the CATHARE 2 code. According to the PEA preliminary results, exhibiting the weight of pressurized scenarios (i.e., with intact primary circuit boundary) for the core damage frequency (CDF), the RMPS exercise is first focusing on the NCDHR performance at these T-H conditions.
机译:由于2400 MWTH气体冷却的快速反应堆概念与主动安全系统结合使用被动安全性,天然循环衰减的问题衰减(NCDHR)可靠性和性能评估,以支持反应堆设计的持续概率安全评估,名为“概率工程评估”(PEA),构成了挑战。在欧洲共同体的第五次框架计划(FPRD)中,已经开发了一种方法来评估由移动流体特征的被动系统的可靠性,其操作基于物理原理,例如自然循环。这种无源系统(RMPS)的可靠性方法基于不确定性传播到热液压(T-H)计算中。该练习的目的最终确定以“被动”模式运行的DHR系统的性能可靠性,考虑到由Cathare 2代码进行的热液压计算所保留的参数的不确定性。根据PEA的初步结果,表现出用于核心损伤频率(CDF)的加压场景的重量(即,具有完整的主电路边界),RMPS练习首先关注这些T-H条件下的NCDHR性能。

著录项

  • 作者

    C. Bassi; M. Marques;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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