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ASTRID Nuclear Island design: update in French-Japanese joint team development of Decay Heat Removal systems

机译:ASTRID核岛设计:法日联合团队开发“衰变”散热系统的最新进展

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ASTRID (Advanced Sodium Technological Reactor for Industrial Demonstration) has the objective to integrate innovative options with the objective to prepare the 4th generation reactors. In this framework a French-Japanese agreement was signed in 2014 between CEA, framatome (ex AREVA NP). JAEA, MHI/MFBR to jointly perform components design of ASTRID such as Decay Heat Removal Systems (DHRS). In this respect an ambitious close collaboration is set in the framework of the practical elimination objective of Decay Heat Removal (DHR) function loss which is one of the main ASTRID safety objectives. To reach this target, design is driven by deterministic safety criteria, probabilistic safety indicators and proper technical and economic analysis. Safety demonstration aims at identifying common cause failures and imposes to search for proper diversification of decay heat removal systems. In ASTRID. DHRS main diversification is based on final heat sinks types and intermediate coolant fluids. It is also based on spatial segregation of systems which leads to thermal loading diversification during normal operation as well as severe accident exposure. Implication of two different designers bodies framatome and a Japanese team (JAEA, Mitsubishi FBR Systems (MFBR) and MHI) also participate to diversification. This paper is giving an update concerning ASTRID DHR strategy with description of reference architecture evolution and project objectives. In particular, new developments were made for DHR during normal shutdown and role of Ex-Vessel system. A special focus is made on design process of automatic shutter to hydraulically connect Hot Plenum and cold plenum to enhance primaiy vessel natural convection.
机译:ASTRID(用于工业示范的先进钠技术反应堆)的目标是整合创新方案,以准备第四代反应堆。在此框架下,CEA framatome(ex AREVA NP)于2014年签署了法日协定。 JAEA,MHI / MFBR共同执行ASTRID的组件设计,例如衰变散热系统(DHRS)。在这方面,在衰变消除(DHR)功能损失的实际消除目标(这是ASTRID的主要安全目标之一)的框架内进行了雄心勃勃的密切合作。为了达到这个目标,设计工作由确定性安全标准,概率安全指标以及适当的技术和经济分析来驱动。安全演示旨在识别常见原因故障,并强加寻找衰减除热系统的适当多样化。在ASTRID中。 DHRS的主要多样化是基于最终的散热器类型和中间冷却液。它还基于系统的空间隔离,这导致正常运行期间的热负荷多样化以及严重的事故风险。两个不同的设计师机构framatome的含义和一个日本团队(JAEA,三菱FBR Systems(MFBR)和MHI)也参与了多元化。本文提供了有关ASTRID DHR策略的更新,其中对参考体系结构的演变和项目目标进行了描述。特别是,在正常停机期间和Ex-Vessel系统的作用下,DHR有了新的发展。特别着重于自动百叶窗的设计过程,该过程以液压方式连接高温全压和冷增压,以增强原始血管的自然对流。

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