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PROPOSED REVIEW FRAMEWORK FOR DESIGN OF PRESSURE RETAINING SYSTEMS AND COMPONENTS (PRSC) IN SMALL MODULAR REACTOR (SMR)

机译:小型模块化反应器(SMR)中的压力保持系统和组件(PRSC)设计的拟议审查框架

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A recent surge of nuclear industry interest in the development of smaller, modular/factory-built nuclear reactors has been underway for the last few years. Recently, the Canadian Nuclear Safety Commission (CNSC), which is the Canadian nuclear regulatory authority, has been reviewing a number of proposed Small Modular Reactor (SMR) designs through the pre-licensing Vendor Design Review (VDR) process. Some of these SMR designs propose to operate under relatively high neutron fluxes and at elevated temperatures to achieve high thermal efficiency compared to current operating power reactors. Other designs employ a highly corrosive coolant medium. Such operating conditions could accelerate or present unforeseen degradation mechanisms that could adversely affect the integrity and service life of the pressure boundary. It is therefore crucial to understand the material behavior under these conditions to devise appropriate design rules for metallic and non-metallic components. Thus, a systematic approach and a well-designed research and development program to address any knowledge gaps in material behavior at the early design stage for a SMR is crucial, so that potential/plausible degradation mechanisms are accounted for and the structural integrity of Pressure Retaining Systems and Components (PRSC) is maintained over the design life. This paper discusses a proposed framework based on key review findings from the pre-licensing VDR of several SMR designs in Canada.
机译:最近几年,核工业对发展小型模块化/工厂建造核反应堆的兴趣激增。最近,加拿大核监管机构加拿大核安全委员会(CNSC)已通过许可前的供应商设计审查(VDR)程序,审查了许多拟议的小型模块化反应堆(SMR)设计。与当前运行的动力堆相比,这些SMR设计中的一些建议在较高的中子通量和较高的温度下运行,以实现较高的热效率。其他设计采用腐蚀性很强的冷却介质。这样的操作条件可能会加速或出现无法预料的退化机制,从而可能会对压力边界的完整性和使用寿命产生不利影响。因此,至关重要的是要了解在这些条件下的材料行为,以便为金属和非金属部件设计适当的设计规则。因此,解决SMR早期设计阶段材料行为方面的任何知识空白的系统方法和精心设计的研发计划至关重要,因此,应考虑潜在/合理的降级机理以及保压结构的完整性。系统和组件(PRSC)在设计生命周期内得到维护。本文讨论了基于加拿大若干SMR设计的预许可VDR中的主要审查发现而提出的框架。

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