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Design failure mode and effect analysis for Korean fusion DEMO plant

机译:韩国融合示范工厂的设计失败模式和效果分析

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The construction of Korean Fusion DEMO Plant (KFDP) for a demonstration of the plasma analysis and engineering feasibilities is planned in 2030s based on the Korean fusion technology roadmap. The radiation safety should be assured for nuclear facilities, so that, the KFDP is required to research for the regulatory requirements and industrial codes and standards. The final design guidance of the engineered safety features should be served in future. As the first step for this research, the failure modes and effects analysis in a design stage was performed. This leads to find the list of potential hazard elements and to obtain the list of initiating events for the future probabilistic risk assessment. The hazard elements expected to seriously threaten the integrity of the KFDP were investigated and determined to quantify the effect of the initiating events in the effect analysis: (1) a total loss of active cooling water to occur during the burn with decay heat calculation and (2) coolant ingress from cooling circuits into the vacuum vessel, cryostat and containment building. For those initiating events, the quantitative simulations using transient mass and energy calculation and computational fluid dynamics were performed.
机译:根据韩国聚变技术路线图,计划在2030年代建造韩国聚变DEMO工厂(KFDP),以演示血浆分析和工程可行性。应确保核设施的辐射安全,因此,需要KFDP研究法规要求以及工业法规和标准。工程安全功能的最终设计指南应在将来提供。作为这项研究的第一步,在设计阶段进行了失效模式和影响分析。这将导致找到潜在危害元素的列表,并获得用于未来概率风险评估的启动事件的列表。调查并确定了预期严重威胁KFDP完整性的危险因素,以量化影响分析中引发事件的影响:(1)通过衰减热量计算,燃烧过程中发生的有效冷却水总损失,以及( 2)冷却剂从冷却回路进入真空容器,低温恒温器和安全壳。对于那些引发事件,进行了使用瞬态质量和能量计算以及计算流体动力学的定量模拟。

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