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A novel cooling scheme for superconducting power cables

机译:超导电力电缆的新型冷却方案

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摘要

Long distance transmission of electrical power with superconducting cables is likely necessary for energy conservation and effective utilization of renewable energy sources. The performance and cost of such superconducting lines is as significantly influenced by cryogenic issues as by superconductor performance. One significant cryogenic issue is that in the usual method of cooling using sub-cooled cryogen flow there is a limited cable length before the cryogen needs to be re-cooled. This adds complexity and cost to the cable system. Here we address this problem by utilizing the latent heat of the cryogen without the complication of multi-phase flow. The cryogen is distributed to the superconducting components by spraying it through small holes in a pressurized line. The pressurized liquid exiting the holes turns into mixed liquid and vapor with a temperature near the boiling point of the cryogen at the pressure of the space surrounding the superconducting components. The pressure in the space surrounding the superconducting components is then kept near atmospheric by maintaining short distances to a vent. The sprayed liquid accumulates but rapidly vaporizes in response to the heat load, providing even cooling power at a fixed temperature for the entire length of the line. Our work indicates that it may be possible to implement a cooling system with much simplified cryogenic stations at the cable ends and allowing cable lengths of up to 100 km with no intermediate cooling stations.
机译:为了节约能源和有效利用可再生能源,可能需要使用超导电缆进行长距离电力传输。这种超导线的性能和成本受低温问题的影响也与超导体性能的影响一样大。一个重要的低温问题是,在使用过冷制冷剂流进行冷却的常规方法中,在需要重新冷却制冷剂之前,电缆长度有限。这增加了电缆系统的复杂性和成本。在这里,我们通过利用冷冻剂的潜热来解决这个问题,而不会造成多相流的复杂化。冷冻剂通过在加压管线中的小孔中喷洒而分布到超导组件上。离开孔的加压液体在围绕超导组件的空间的压力下变成混合的液体和蒸气,其温度接近致冷剂的沸点。然后,通过与排气孔保持短距离,将超导组件周围空间中的压力保持在接近大气压的水平。喷洒的液体会根据热负荷积聚但迅速蒸发,从而在整个管线的固定温度下提供均匀的冷却能力。我们的工作表明,有可能实现一种冷却系统,该冷却系统在电缆端部具有简化得多的低温站,并且在没有中间冷却站的情况下允许电缆长度长达100 km。

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