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First wall and divertor engineering research for power plant in JAERI

机译:贾里电厂的第一墙和转型工程研究

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JAERI has successfully developed plasma-facing components (PFCs) for ITER application, and the R&D activities are now being shifted to the development of the PFCs for a fusion power plant. This paper presents the R&D activity on the PFCs, such as the first wall and divertor, for a fusion power plant. The PFCs of the power plant will be subjected to heavy neutron irradiation and high heat/particle fluxes from the plasma during the continuous operation. In the present design of the PFCs, the candidate structural material is a reduced activation ferritic-martensitic steel, F82H, selected for low activation and high robustness against neutron irradiation, and the candidate armor material is tungsten, selected for the low sputtering yield and low tritium retention. To achieve PFCs using these materials, there are several R&D issues to be solved: (1) development of a cooling structure with high heat removal capability, (2) development of a suitable form of tungsten, (3) selection of a bonding technique for F82H and tungsten and (4) evaluation of structural integrity. Recent JAERI R&D achievements and status of these issues are presented.
机译:Jaeri已成功开发了面向等离子体的组件(PFCS),适用于ITER应用,现在研发活动正在转移到融合电厂PFC的开发。本文介绍了融合发电厂的PFCS上的研发活动,如第一墙和置换器。在连续操作期间,发电厂的PFC将受到等离子体的重中子辐射和高热/粒子通量。在本发明的PFCs的设计中,候选结构材料是一种减少的活化铁素体 - 马氏体钢,F82h,选择用于低激活和对中子辐射的高稳健性,抗晶体材料是钨,选择低溅射产量和低氚保留。为了实现PFC使用这些材料,有几个R&D问题待解决:(1)开发具有高散热能力的冷却结构,(2)合适形式的钨,(3)选择粘合技术F82H和钨和(4)结构完整性评价。最近的jaeri研发成就和这些问题的地位。

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