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Design of a 100kVA high temperature superconducting demonstration synchronous generator

机译:100kVa高温超导示范同步发电机的设计

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摘要

The paper presents the main features of a 100 kVA high temperature superconducting (HTS) demonstrator generator, which is designed and being built at the University of Southampton. The generator is a 2-pole synchronous machine with a conventional 3-phase stator and a HTS rotor operating in the temperature range 57–77 K using either liquid nitrogen down to 65 K or liquid air down to 57 K. Liquid air has not been used before in the refrigeration of HTS devices but has recently been commercialised by BOC as a safe alternative to nitrogen for use in freezing of food. The generator will use an existing stator with a bore of 330 mm. The rotor is designed with a magnetic core (invar) to reduce the magnetising current and the field in the coils. For ease of manufacture, a hybrid salient pole construction is used, and the superconducting winding consists of twelve 50-turn identical flat coils. Magnetic invar rings will be used between adjacent HTS coils of the winding to divert the normal component of the magnetic field away from the Bi2223 superconducting tapes. To avoid excessive eddy-current losses in the rotor pole faces, a cold copper screen will be placed around the rotor core to exclude ac magnetic fields.
机译:本文介绍了由南安普敦大学设计并制造的100 kVA高温超导(HTS)演示发生器的主要功能。发电机是两极同步电机,具有传统的三相定子和高温超导转子,其运行温度范围为57-77 K,使用液氮低至65 K或液空气低至57K。以前用于HTS设备的制冷,但最近已被中银商业化,可作为食品冷冻中氮气的安全替代品。发电机将使用孔距为330 mm的现有定子。转子设计有磁芯(殷钢),以减少磁化电流和线圈中的磁场。为了便于制造,使用了混合凸极结构,超导绕组由十二个50匝相同的扁平线圈组成。绕组的相邻HTS线圈之间将使用磁性殷钢环,以将磁场的正常分量从Bi2223超导带材转移开。为避免转子极面中的涡流损耗过大,将在转子铁芯周围放置一个冷铜丝网,以排除交流磁场。

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