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Effects of an electromagnetic shield and armature teeth on the short-circuit performance of a direct drive superconducting generator for 10 MW wind turbines

机译:电磁屏蔽和电枢齿对10 mW风力发电机直接驱动超导发电机短路性能的影响

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摘要

To reduce the cost of energy of offshore wind energy conversion, large individual wind turbines of 10 MW or higher power levels are drawing more attention and expected to be desirable. Conventional wind generator systems would be rather large and costly if scaled up to 10 MW. Direct drive superconducting generators have been proposed to reduce the generator size, because the electrical machines with superconducting windings are capable of achieving a higher torque density. However, a superconducting machine is likely to produce an excessive torque during a short circuit because of its small reactance. An electromagnetic (EM) shield between the rotor and the stator as well as iron or non-magnetic composite (NMC) armature teeth affects the sub-transient reactance of a superconducting machine so that they play a role in the short-circuit performance of a superconducting wind generator. This paper presents a 10 MW superconducting generator design and studies the effects of material, thickness and position of an EM shield and the effects of NMC and iron armature teeth on the torque and the field current density during a three-phase short circuit at the generator terminal. One result shows that the short circuit torque is not able to be effectively reduced by varying the EM shield and the armature tooth material. The other result shows that the field current density is likely to exceed its critical value during a short circuit although the EM shield material and the armature tooth material take some effect.
机译:为了降低海上风能转换的能源成本,10 MW或更高功率水平的大型单个风力涡轮机引起了更多关注,并有望成为人们所期望的。如果扩大到10兆瓦,传统的风力发电机系统将相当庞大且昂贵。已经提出了直接驱动的超导发电机来减小发电机的尺寸,因为具有超导绕组的电机能够实现更高的转矩密度。但是,由于超导电机的电抗较小,因此可能在短路期间产生过大的转矩。转子和定子之间的电磁(EM)屏蔽以及铁质或非磁性复合材料(NMC)电枢齿会影响超导电机的次瞬变电抗,因此它们会在超导电机的短路性能中发挥作用超导风力发电机。本文介绍了一种10 MW超导发电机的设计,并研究了发电机的三相短路时,电磁屏蔽的材料,厚度和位置以及NMC和电枢齿对转矩和励磁电流密度的影响终奌站。一个结果表明,不能通过改变EM屏蔽罩和电枢齿材料来有效降低短路转矩。另一个结果表明,尽管EM屏蔽材料和电枢齿材料起了一定作用,但在短路期间励磁电流密度可能会超过其临界值。

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