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Development of a 500 kVA-class oxide-superconducting power transformer operated at liquid-nitrogen temperature

机译:在液氮温度下运行的500 kVA级氧化物超导功率变压器的开发

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We have designed and constructed a 500 kVA-class oxide-superconducting power transformer. The windings are cooled by liquid nitrogen or subcooled nitrogen in a G-FRP cryostat of 785 mm in diameter and 1210 mm in height, that has a room-temperature space for an iron core with the diameter of 314 mm. The primary and secondary windings are three-strand and six-strand parallel conductors of a Bi-2223 multifilamentary tape with silver sheath, respectively. The strand 0.22 mm thick and 3.5 mm wide has 61 filaments with no twisting. The ratio of superconductor is 0.284. In the parallel conductors, the strands are transposed five times in each layer for a uniform current distribution among them. It was proved that the transformer has the rated capacity of 500 kVA by means of two-h short-circuit test and half-h no-load test in liquid nitrogen of 77 K. The efficiency is estimated as 99.1% from a core loss of 2.3 kW and a thermal load of 2.2 kW in coolant. The latter is composed of AC losses in windings and heat leakage from the cryostat and current leads, and is multiplied by a refrigeration penalty of liquid nitrogen, 20. Load test was also performed up to 500 kVA. The transformer was furthermore operated in subcooled nitrogen at 66 K with no quenching up to a critical level, that is equivalent to 800 kVA. The efficiency estimated was improved to 99.3% in subcooled nitrogen. Measured a.c, loss in both windings are well explained by a theoretical prediction with the "critical state model". We also discuss prospective applications of the parallel conductors composed of advanced HTS multifilamentary tapes to a.c. windings with large current capacity. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 11]
机译:我们设计并制造了500 kVA级氧化物超导功率变压器。绕组在直径785 mm,高1210 mm的G-FRP低温恒温器中由液氮或过冷氮冷却,该恒温器具有用于存放直径为314 mm的铁芯的室温空间。初级绕组和次级绕组分别是带有银外皮的Bi-2223复丝带的三股和六股并联导体。 0.22毫米厚和3.5毫米宽的线束有61条无扭曲的细丝。超导体的比率为0.284。在平行导体中,每层中的绞线要换位五次,以使它们之间具有均匀的电流分布。通过在77 K的液氮中进行两小时的短路测试和半小时的空载测试,证明该变压器具有500 kVA的额定容量。根据铁芯损耗,估计效率为99.1%。冷却液为2.3 kW,热负荷为2.2 kW。后者由绕组中的交流损耗,低温恒温器和电流引线的热泄漏组成,并乘以液氮的制冷损失20。还进行了高达500 kVA的负载测试。此外,该变压器在66 K的过冷氮气中运行,没有淬火到相当于800 kVA的临界水平。在过冷的氮气中,估计的效率提高到99.3%。在交流测量中,两个绕组的损耗都可以通过“临界状态模型”的理论预测得到很好的解释。我们还讨论了由高级HTS复丝带构成的平行导体在交流电方面的潜在应用。大电流绕组。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:11]

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