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Novel model of stator design to reduce the mass of superconducting generators

机译:降低超导发电机质量的定子设计小说模型

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High temperature superconductors (HTS), with much higher current density than conventional copper wires, make it feasible to develop very powerful and compact power generators. Thus, they are considered as one promising solution for large (10 + MW) direct-drive offshore wind turbines due to their low tower head mass. However, most HTS generator designs are based on a radial topology, which requires an excessive amount of HTS material and suffers from cooling and reliability issues. Axial flux machines on the other hand offer higher torque/volume ratios than the radial machines, which makes them an attractive option where space and transportation becomes an issue. However, their disadvantage is heavy structural mass. In this paper a novel stator design is introduced for HTS axial flux machines which enables a reduction in their structural mass. The stator is for the first time designed with a 45 degrees angle that deviates the air gap closing forces into the vertical direction reducing the axial forces. The reduced axial forces improve the structural stability and consequently simplify their structural design. The novel methodology was then validated through an existing design of the HTS axial flux machine achieving a similar to 10% mass reduction from 126 tonnes down to 115 tonnes. In addition, the air gap flux density increases due to the new claw pole shapes improving its power density from 53.19 to 61.90 W kg(-1). It is expected that the HTS axial flux machines designed with the new methodology offer a competitive advantage over other proposed superconducting generator designs in terms of cost, reliability and power density.
机译:高温超导体(HTS),电流密度远远高于传统的铜线,使得开发非常强大和紧凑的发电机的可行性。因此,由于其低塔头部质量,它们被认为是大(10 + MW)直接驱动的近海风力涡轮机的一个有希望的解决方案。然而,大多数HTS发生器设计基于径向拓扑,这需要过量的HTS材料并遭受冷却和可靠性问题。另一方面,轴向磁通机提供比径向机器更高的扭矩/体积比,这使得它们成为一个有吸引力的选择,空间和运输成为一个问题。然而,它们的缺点是沉重的结构质量。本文介绍了一种新型定子设计,用于HTS轴向磁通机,其能够降低其结构质量。定子是第一时间设计的,其具有45度的角度,该45度角度偏离空气间隙关闭力进入垂直方向减小轴向力。降低的轴向力提高了结构稳定性,从而简化了它们的结构设计。然后通过现有的HTS轴向磁通机的现有设计验证了新颖的方法,从而实现了与126吨降至115吨的10%降低10%。另外,由于新的爪极形状提高其功率密度从53.19至61.90wkg(-1),气隙磁通密度增加。预计采用新方法设计的HTS轴向磁通机在成本,可靠性和功率密度方面提供了其他提出的超导发电机设计的竞争优势。

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