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Recent breakthroughs on C-2U: Norman's legacy

机译:C-2U的最新突破:诺曼的遗产

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摘要

Conventional field-reversed configurations (FRC) face notable stability and confinement concerns, which can be ameliorated by introducing and maintaining a significant fast ion population in the system. This is the conjecture first introduced by Norman Rostoker multiple decades ago and adopted as the central design tenet in Tri Alpha Energy's advanced beam driven FRC concept. In fact, studying the physics of such neutral beam (NB) driven FRCs over the past decade, considerable improvements were made in confinement and stability. Next to NB injection, the addition of axially streaming plasma guns, magnetic end plugs, as well as advanced surface conditioning lead to dramatic reductions in turbulence driven losses and greatly improved stability. In turn, fast ion confinement improved significantly and allowed for the build-up of a dominant fast particle population. This recently led to the breakthrough of sustaining an advanced beam driven FRC, thereby demonstrating successful maintenance of trapped magnetic flux, plasma dimensions and total pressure inventory for times much longer than all characteristic system time scales and only limited by hardware and electric supply constraints.
机译:常规的场反向配置(FRC)面临着显着的稳定性和局限性问题,可以通过在系统中引入并保持大量快速离子来改善这种局面。这是几十年前诺曼·罗斯托克(Norman Rostoker)首次提出的猜想,并被Tri Alpha Energy先进的光束驱动FRC概念作为中心设计宗旨。实际上,在过去的十年中研究这种中性束(NB)驱动的FRC的物理过程,在封闭性和稳定性方面取得了很大的进步。除NB注入外,增加了轴向流动的等离子枪,磁性端塞以及先进的表面处理功能,可显着减少湍流驱动的损失,并大大提高了稳定性。反过来,快速离子限制也得到了显着改善,并允许建立主要的快速粒子群。最近,这导致了维持先进的光束驱动FRC的突破,从而证明了对被困磁通量,等离子体尺寸和总压力存量的成功维护比所有特征系统时间尺度长得多,并且仅受硬件和电源限制。

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