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Status of HELIAS reactor studies

机译:HELIAS反应堆研究的现状

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In this paper an overview of the helical advanced stellarator (Helias) reactor studies is presented. The Helias reactor (HSR) is a reactor candidate of the optimized stellarator line, developed at the Max-Planck Institut fuer Plasmaphysik, in Germany. It is an up-scaled version of the Wendelstein 7X, which accommodates a blanket and a shield and combines the modular coils with the optimized properties of the fusion plasma [T. Andreeva, CD. Beidler, E. Harmeyer, Yu.L. Igitkhanov, Ya.I. Kolesnichenko, V.V. Lutsenko, A. Shishkin, F. Herrnegger, J. Kisslinger, H. Wobig, The Helias reactor concept: comparative analysis of different field period configurations, Fusion Sci. Technol. 46 (2004) 395-400]. A compact reference version is HSR4/18 with 4-field periods and a 18 m major radius. HSR4/18 can stably operate at an average beta 4-5% and to deliver a fusion power of 3 GW. The design of the HSR demonstrates criteria of a safe and reliable route to ignition, a self-sustained burn without external heating, reliability of the technical components and the tritium breeding blanket. The coil system, the vacuum vessel and the shielding blanket are discussed. A more compact HSR3/15 configuration with 3-field periods and a 15 m major radius shows, however, a considerable amount of the bootstrap current and requires further optimization. A quasi-isodynamical configuration without transitional particle orbits was considered as an option, which confines almost 100% energetic particles.
机译:本文介绍了螺旋式先进恒星反应器(Helias)的研究概况。 Helias反应堆(HSR)是在德国Max-Planck Institut fuer Plasmaphysik开发的最佳恒星器生产线的候选反应堆。它是Wendelstein 7X的升级版,可容纳毯子和护罩,并将模块化线圈与聚变等离子体的优化特性结合在一起[T. CD安德列耶娃(Andreeva)。 Beidler,E.Harmeyer和Yu.L.亚基·伊吉特卡诺夫(Igitkhanov)科列斯尼琴科(V.V. Lutsenko,A。Shishkin,F。Herrnegger,J。Kisslinger,H。Wobig,Helias反应堆概念:不同场周期配置的比较分析,Fusion Sci。技术。 46(2004)395-400]。紧凑的参考版本是HSR4 / 18,具有4场周期和18 m的主半径。 HSR4 / 18可以稳定地在平均4-5%的beta下运行,并提供3 GW的融合功率。高铁的设计证明了安全可靠的点火途径,无外部加热的自持式燃烧,技术组件的可靠性和the繁殖毯的标准。讨论了线圈系统,真空容器和屏蔽层。但是,具有3个场周期和15 m长半径的更紧凑的HSR3 / 15配置显示了相当数量的自举电流,需要进一步优化。没有过渡粒子轨道的准等动力学配置被认为是一种选择,它限制了几乎100%的高能粒子。

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