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Initial Exploration of High-Field Pulsed Stellarator Approach to Ignition Experiments

机译:高场脉冲恒星脉冲法点火实验的初步探索

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In the framework of fusion energy research based on magnetic confinement, pulsed high-field tokamaks such as Alcator and FTU have made significant scientific contributions, while several others have been designed to reach ignition, but not built yet (IGNITOR, FIRE). Equivalent stellarator concepts, however, have barely been explored. The present study aims at filling this gap by: (1) performing an initial exploration of parameters relevant to ignition and of the difficulties for a high-field stellarator approach, and, (2) proposing a preliminary high-field stellarator concept for physics studies of burning plasmas and, possibly, ignition. To minimize costs, the device is pulsed, adopts resistive coils and has no blankets. Scaling laws are used to estimate the minimum field needed for ignition, fusion power and other plasma parameters. Analytical expressions and finite-element calculations are used to estimate approximate heat loads on the divertors, coil power consumption, and mechanical stresses as functions of the plasma volume, under wide-ranging parameters. Based on these studies, and on assumptions on the enhancement-factor of the energy confinement time and the achievable plasma beta, it is estimated that a stellarator of magnetic field B 10 T and 30m(3) plasma volume could approach or reach ignition, without encountering unsurmountable thermal or mechanical difficulties. The preliminary conceptual device is characterised by massive copper coils of variable cross-section, detachable periods, and a lithium wall and divertor.
机译:在基于磁约束的聚变能研究框架中,诸如Alcator和FTU之类的脉冲高场托卡马克做出了重大的科学贡献,同时还设计了其他几种可以点燃但尚未建造的点火器(IGNITOR,FIRE)。但是,几乎没有研究过等效的恒星器概念。本研究旨在通过以下方式填补这一空白:(1)对与点火有关的参数以及高场恒星器方法的困难进行初步探索,以及(2)提出用于物理学研究的初步高场恒星器概念燃烧等离子体,甚至可能着火。为了最大程度地降低成本,该设备采用脉冲方式,采用电阻线圈并且没有覆盖层。缩放定律用于估计点火,聚变功率和其他等离子体参数所需的最小场。在广泛的参数下,分析表达式和有限元计算用于估算偏滤器上的近似热负荷,线圈功耗和等离子体积函数的机械应力。基于这些研究,并基于能量限制时间的增强因子和可达到的等离子体β的假设,估计磁场B 10 T和30m(3)等离子体体积的恒星将接近或达到点火,而不会遇到无法克服的热或机械困难。初步概念设备的特点是横截面可变,周期可拆卸的大型铜线圈以及锂壁和分流器。

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