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Design assessment of heliotron reactor

机译:HelioRron反应堆的设计评估

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Helical reactor designs are studied on the basis of the physics and engineering concept of the Large Hclical Device (LHD), which is characterized by two advantages: an efficient, closed helical divertor and a simplified continuous coil syste. First, optimization studies of lota=2 conventional LHD type reactors (LHD-R) have been carried out. One point plasma modelling, in addition to 3-D equilibrium/1-D transport analysis, has clarified the D-T ignition condition. An accessible design window for reactor parameters is found by using physics and engineering constrains. A cost estimate suggests the importance of the compact design in reducing the cost of electricity. Second, a new reactor design candidate, the modular heliotron reactor (MHR), is proposed; it is focused on the advantage of an efficient helical divertor that is compatible with the modular helical coil system. A special coil winding system permits an appropriate coil gap for reactor module maintenance, and makes good plasma confinement and an efficient helical divertor configuration compatible with each other. Two MHR design options are selected on the basis of the LHD-R system analysis. Third, by making use of the advantage of the simplified continuous coil design, a high field force free helical reactor (FFHR) is proposed in order to reduce the electromagnetic force by adopting an lota=3 force free like continuous coil system. The molten salt FLiBe, LiF-BeF_2, is selected in FFHR as a self-cooling tritium breeder, from the viewpoint of safety and compatibility with the high magnetic field design.
机译:基于大型HClical装置(LHD)的物理和工程概念来研究螺旋反应器设计,其特征在于两个优点:有效,闭合的螺旋偏移器和简化的连续线圈系统。首先,已经进行了LOTA = 2常规LHD型反应器(LHD-R)的优化研究。单点等离子体造型,除了3-D平衡/ 1-D运输分析外,还阐明了D-T点火条件。通过使用物理和工程约束找到用于反应器参数的可访问设计窗口。成本估算表明,紧凑设计降低了电力成本的重要性。其次,提出了一种新的反应堆设计候选者,模块化的HelioRron反应堆(MHR);它专注于具有与模块化螺旋线圈系统兼容的有效螺旋形式的优点。特殊的线圈绕组系统允许适当的线圈间隙用于电抗器模块维护,并使良好的等离子体限制和彼此兼容的有效的螺旋偏移器配置。在LHD-R系统分析的基础上选择两个MHR设计选项。第三,通过利用简化的连续线圈设计的优点,提出了一种高场力自由螺旋反应器(FFHR)以通过采用Lota = 3 Force Like Indion Coil系统来减少电磁力。从安全性和高磁场设计的兼容性的观点来看,在FFHR中选择熔盐含量,LiF-BEF_2,作为自冷却氚育种者。

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