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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >The Design to Downsize a Conduction-Cooled LTS Pulse Coil for UPS-SMES as Protection From Momentary Voltage Drops
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The Design to Downsize a Conduction-Cooled LTS Pulse Coil for UPS-SMES as Protection From Momentary Voltage Drops

机译:减小用于UPS-SMES的传导冷却LTS脉冲线圈的设计,以防止瞬间电压降

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摘要

The stability margin of a conduction-cooled LTS pulse coil with stored energy of 1 MJ, which is used for UPS-SMES as protection from momentary voltage drops, is estimated from thermal analyses using the two-dimensional finite elementary method. How much the 1 MJ coil is able to be downsized is discussed. The winding conductor of this coil is a NbTi/Cu Rutherford cable, which is extruded with aluminum. Dyneema FRP and Litz wires are used as the spacers of this coil. In the design of this 1 MJ coil, the effects of spacers were neglected. In order to estimate the stability margin, thermal analyses was carried out by taking into account the thermal effects of spacers, for the coil during overload operation. And it was checked whether the maximum temperature The results showed that the 1 MJ coil has a large stability margin of 8 times the rated ac loss. In addition, new coils with a stability margin of about two times were designed. Possibilities for reducing the size and the cost of a 1 MJ LTS pulse coil are also shown.
机译:使用二维有限元方法通过热分析估算了用于UPS-SMES的瞬态电压降保护的,存储能量为1 MJ的传导冷却LTS脉冲线圈的稳定裕度。讨论了1 MJ线圈能够减小多少尺寸。该线圈的绕组导体是NbTi / Cu Rutherford电缆,该电缆用铝挤压而成。 Dyneema FRP和Litz线用作该线圈的垫片。在此1 MJ线圈的设计中,忽略了垫片的影响。为了估计稳定性裕度,在考虑过载时线圈的垫片的热效应来进行热分析。并检查了是否达到最高温度。结果表明,1 MJ线圈具有8倍额定交流损耗的较大稳定性裕度。此外,还设计了稳定性余量约为两倍的新型线圈。还显示了减小1 MJ LTS脉冲线圈的尺寸和成本的可能性。

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