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APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Cost Modeling and Design of Field-Reversed Configuration Fusion Power Plants

机译:APS-等离子体物理APS部门第59届年会-事件-反向配置核聚变电站的成本建模与设计

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The Inductively Driven Liner (IDL) fusion concept uses the magnetically driven implosion of thin (0.5--1 mm) Aluminum hoops to magnetically compress a merged Field-Reversed Configuration (FRC) plasma to fusion conditions. Both the driver and the target have been studied experimentally and theoretically by researchers at Helion Energy, MSNW, and the University of Washington, demonstrating compression fields greater than 100 T and suitable fusion targets. In the presented study, a notional power plant facility using this approach will be described. In addition, a full cost study based on the LLNL Z-IFE and HYLIFE-II studies, the ARIES Tokamak concept, and RAND power plant studies will be described. Finally, the expected capital costs, development requirements, and LCOE for 50 and 500 MW power plants will be given. This analysis includes core FRC plant scaling, metallic liner recycling, radiation shielding, operations, and facilities capital requirements.
机译:感应驱动衬管(IDL)融合概念使用薄的(0.5--1 mm)铝箍的磁驱动内爆来将合并的场反转配置(FRC)等离子体磁压缩到聚变条件。 Helion Energy,MSNW和华盛顿大学的研究人员从理论上对驱动器和目标进行了研究,展示了大于100 T的压缩场和合适的融合目标。在本研究中,将描述使用这种方法的概念性电厂设施。另外,将描述基于LLNL Z-IFE和HYLIFE-II研究,ARIES Tokamak概念以及RAND电厂研究的全面成本研究。最后,将给出50和500 MW电厂的预期资本成本,开发要求和LCOE。该分析包括FRC核心工厂规模,金属衬板回收,辐射屏蔽,运营和设施资本要求。

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