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High current density aluminium stabilized conductor concepts for space applications

机译:适用于太空应用的高电流密度铝稳定导体概念

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The authors report on a high-current-density aluminium-stabilized conductor concept for large spaceborne energy storage inductors. High-purity-aluminium-stabilized NbTi composite conductors cooled by 1.8-K helium can provide a winding current density up to 15 kA/cm/sup 2/ at fields up to 10 T. The conductors are edge-cooled with enough surface area to provide recovery following a normalizing disturbance. The conductors are designed so that current diffusion time in the high-purity aluminium is smaller than the thermal diffusion time in helium. Conductor design, stability, and current diffusion are considered. The numerical analysis of transient stability shows that aluminium-stabilized conductors with final resistivity ratio greater than 800 can be stable in a 1.8-K pressurized helium II bath up to 50 kA (J=15 kA/cm/sup 2/) at fields up to 10 T. single-layer toroids are preferred over multilayer ones because of their simplicity of construction, large current requirement, and better magnetoresistance.
机译:作者报告了一种用于大型空间储能电感器的高电流密度铝稳定导体概念。经1.8 K氦气冷却的高纯度铝稳定NbTi复合导体可在高达10 T的磁场下提供高达15 kA / cm / sup 2 /的绕组电流密度。导体被边缘冷却,具有足够的表面积在正常化干扰后提供恢复。导体的设计应使高纯度铝中的电流扩散时间小于氦气中的热扩散时间。考虑导体设计,稳定性和电流扩散。瞬态稳定性的数值分析表明,最终电阻率大于800的铝稳定导体可以在高达50 kA(J = 15 kA / cm / sup 2 /)的1.8 K加压氦II浴中保持稳定单层环形线圈比多层环形线圈更优选10至10 T,因为它们结构简单,电流需求大且磁阻更好。

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