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Test results of the 100 kWh SMES model coil- AC loss performance

机译:100 kWh SMES模型线圈的测试结果-交流损耗性能

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In order to establish a technology needed for asmall-scale 100 kWh SMES device, an SMES model coil wasfabricated. Performance tests were carried out at the Japan AtomicEnergy Research Institute (JAERI) in 1996. After that, the coil wasinstalled in the Lawrence Livermore National Laboratory (LLNL)facility and tested in 1998, in collaboration between Japan and theUnited states. The AC losses measured at LLNL were in goodagreement with those measured at JAERI. It was reconfirmed thatthe coupling loss of the coil could be expressed in twocomponents: one with a short and another with a long couplingtime constant. We found out from the Hall probe signals that theloop currents with long decay times were induced in the CICconductor by varying magnetic field. These currents resulted inadditional AC loss in the coil. To develop a concept of CIC withlow AC loss, we made a sub-scale CIC conductor of strandscoated with CuNi. We fabricated a small coil out of this conductorand measured the AC loss. The measured AC loss in this coil wasabout 1/6 of that in the SMES model coil conductor per strandvolume. Thus, the CuNi coating of the strands was demonstratedto be effective to reduce the AC loss in the coil. 2000 ElsevierScience Ltd. All rights reserved.
机译:为了建立小型100 kWh SMES设备所需的技术,制造了SMES模型线圈。 1996年在日本原子能研究所(JAERI)进行了性能测试。此后,该线圈被安装在劳伦斯·利弗莫尔国家实验室(LLNL)的设施中,并于1998年在日本和美国的合作下进行了测试。 LLNL测得的交流损耗与JAERI测得的交流损耗非常一致。再次确认,线圈的耦合损耗可以用两个分量表示:一个分量短,而另一个具有长的耦合时间常数。我们从霍尔探针信号中发现,通过改变磁场,在CIC导体中感应出了具有长衰减时间的环路电流。这些电流导致线圈中的其他交流损耗。为了提出一种交流损耗低的CIC概念,我们制作了一个由CuNi包覆的亚级CIC导体。我们用这种导体制作了一个小线圈,并测量了交流损耗。在该线圈中测得的交流损耗约为每股体积SMES模型线圈导体中交流损耗的1/6。因此,证明了绞合线的CuNi涂层可有效减少线圈中的AC损耗。 2000 ElsevierScience Ltd.保留所有权利。

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