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Design and Evaluation of 66 kV Class HTS Power Cable Using REBCO Wires

机译:使用REBCO电线设计和评估66 kV级HTS电力电缆

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High temperature superconducting (HTS) cables achieve large power capacity and low-loss power transmission in a compact package. In a new Japanese national project, Sumitomo Electric Industries, Ltd. is working to develop a 66 kV–5 kArms HTS cable with REBCO wires. One of the important technical targets is to reduce AC loss to less than 2 W/m/ph at 5 kArms. To investigate the effect of wire width on the AC losses in multi-layer cable conductors, 30-mm-wide REBCO tapes were divided into 4-mm-wide or 2-mm-wide strips, and two 4-layer cable conductors were manufactured with these strips. The measured AC loss characteristics of the two cable conductors were comparable. The measured AC loss in the cable conductor with 4-mm-wide wire was in good agreement with numerical calculations. However, the AC loss in the cable conductor with 2-mm-wide wires was larger than the numerical prediction. The difference may be due to the wires' non-uniform $J_{c}$ distribution in the width direction, because the AC losses in cable conductors with narrow wires are strongly influenced by the $J_{c}$ profiles of the wires. AC loss simulations assuming that the wire's $I_{c}$ will be higher show that a 14000 A- $I_{c}$ class cable with 4-mm-wide wires is expected to achieve the AC loss target. For cables with 2-mm-wide wires, the improvement of $J_{c}$ distribution in the width direction will reduce the AC loss level, and the goal will be achieved with lower $I_{c}$ wires.
机译:高温超导(HTS)电缆以紧凑的包装实现了大功率容量和低损耗的功率传输。在日本的一个新的国家项目中,住友电气工业株式会社正在开发使用REBCO电线的66 kV-5 kArms HTS电缆。重要的技术目标之一是将5 kArms的交流电损耗降低到2 W / m / ph以下。为了研究线宽对多层电缆导体中交流损耗的影响,将30毫米宽的REBCO胶带分成4毫米宽或2毫米宽的条带,并制造了两个4层电缆导体这些条。两条电缆导体的实测交流损耗特性相当。在使用4毫米宽电线的电缆导体中测得的交流损耗与数值计算非常吻合。但是,使用2毫米宽电线的电缆导体中的交流损耗大于数值预测。差异可能是由于导线在宽度方向上的分布不均匀,这是因为带有窄导线的电缆导体中的交流损耗受导线的分布影响很大。假定导线的$ I_ {c} $会更高的交流损耗模拟表明,预期使用具有4毫米宽导线的14000 A- $ I_ {c} $级电缆可以达到交流损耗目标。对于具有2毫米宽电线的电缆,改善宽度方向上的$ J_ {c} $分布将减少交流损耗水平,并且可以使用更少的$ I_ {c} $电线来达到目标​​。

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