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Reduction of insulation thickness and AC loss in a superconducting cable under lightning-surge-free circumstances

机译:在无雷电浪涌的情况下降低超导电缆的绝缘厚度和交流损耗

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When a large amount of electric power is directly supplied through superconducting power cables from a satellite power plant to a future computer-based city center, they can be operated under lightning-surge-free circumstances. The insulation thickness necessary to withstand a lightning surge is left out of the consideration of such a condition. The authors point out that the reduction of insulation thickness is very effective in helping decrease not only the AC loss, but also the total transmission loss in the superconducting cable. Quantitative investigations are carried out with respect to a liquid-nitrogen-cooled high-T/sub c/ superconducting cable. A reduction of 20-30% of the insulation thickness is shown to result in a decrease of 15% of the total loss for a 3000-MVA, 275-kV cable. For a transmission capacity of 5000 MVA the reduction rate of the total transmission loss of a 275-kV superconducting cable is 35%.
机译:当通过超导电缆从卫星发电厂直接向未来的以计算机为基础的市中心直接提供大量电力时,它们可以在无雷电浪涌的情况下运行。考虑到这种情况,就没有了承受雷电浪涌所需的绝缘厚度。作者指出,减小绝缘层厚度不仅有助于减少交流损耗,而且有助于降低超导电缆的总传输损耗,非常有效。对液氮冷却的高T / sub c /超导电缆进行了定量研究。减少20-30%的绝缘层厚度可导致3000-MVA,275-kV电缆的总损耗减少15%。对于5000 MVA的传输容量,275 kV超导电缆的总传输损耗的降低率为35%。

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