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Current design of the European TBM systems and implications on DEMO breeding blanket

机译:欧洲TBM系统的当前设计及其对DEMO繁殖毯的影响

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Europe is committed in developing the design of the two Test Blanket Systems (TBS) based on HCLL (Helium Cooled Lithium Lead) and HCPB (Helium Cooled Pebble Bed) breeding blanket (BB) concepts. The complexity of the TBS design comes not only from the innovative fabrication technologies and materials adopted for Test Blanket Modules (TBM) but also from the requirements and functions that the TBM ancillary systems have to satisfy and implement. Indeed, the main TBM ancillary systems, namely the Helium Cooling System, the Coolant Purification System and Tritium Extraction System, all belonging to the Safety Important Class (SIC), have to implement fundamental functions, like the transport of the surface and volumetric heat from the TBM to the heat sink, the extraction and processing of the tritium generated in the TBM, the confinement of radioactive inventory, the support to the investment protection and safety functions. On top of the full compliance with the ITER safety principles, the design of the TBM systems is focused on providing high operational reliability and availability not to jeopardize ITER program and, at the same time, also a good operational flexibility to make possible the achievement of the main TBM scientific objectives.
机译:欧洲致力于基于HCLL(氦冷却锂铅)和HCPB(氦冷却卵石床)繁殖毯(BB)概念开发两种测试毯系统(TBS)的设计。 TBS设计的复杂性不仅取决于测试毯模块(TBM)采用的创新制造技术和材料,还取决于TBM辅助系统必须满足和实现的要求和功能。确实,主要的TBM辅助系统,即氦冷却系统,冷却液净化系统和Tri提取系统,都属于安全重要等级(SIC),必须实现基本功能,例如从地面输送热量和散发热量TBM到散热器,TBM中产生的generated的提取和处理,放射性存量的限制,对投资保护和安全功能的支持。除了完全遵守ITER安全原则外,TBM系统的设计还着重于提供高运行可靠性和可用性,而不会损害ITER计划,同时还具有良好的运行灵活性,以实现ITER计划。 TBM的主要科学目标。

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