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Curl-free magnetic fields for stellarator optimization

机译:用于螺旋液优化的无卷曲磁场

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摘要

This paper describes a new and efficient method of defining an annular region of a curl-free magnetic field with specific physics and coil properties that can be used in stellarator design. Three statements define the importance: (1) Codes can follow an optimized curl-free initial state to a final full-pressure equilibrium. The large size of the optimization space of stellarators, approximately 50 externally produced distributions of magnetic field, makes success in finding a global optimum largely determined by the starting point. (2) The design of a stellarator is actually improved when the central region of the plasma has rapid transport with the confinement provided by a surrounding annulus of magnetic surfaces with low transport. (3) The stellarator is unique among all fusion concepts, inertial as well as magnetic, in not using the plasma itself to provide an essential part of its confinement concept. This permits reliable computational design, which opens a path to faster, cheaper, and more certain achievement of fusion energy. Published under license by AIP Publishing.
机译:本文介绍了一种新的有效的方法,可以用可用于螺栓仪设计的特定物理和线圈特性来定义无卷曲磁场的环形区域。三个陈述定义了重要性:(1)代码可以遵循最优化的无卷曲初始状态到最终的全压平衡。螺栓恒定器的大尺寸大小,大约50外部产生的磁场分布,使得成功地找到由起点决定的全球最佳。 (2)当等离子体的中心区域具有快速运输时,螺栓的设计实际上改善了通过具有低运输的磁表面周围环绕环的限制。 (3)螺栓仪在所有融合概念中是独一无二的,惯性以及磁性,而不是使用等离子本身提供其限制概念的重要组成部分。这允许可靠的计算设计,它打开了更快,更便宜,更符合融合能量的路径。通过AIP发布在许可证下发布。

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