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Investigation of structure of superconducting power transmission cables with LN2 counter-flow cooling

机译:具有LN2逆流冷却的超导输电电缆的结构研究

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Establishment of long-distance cooling techniques and design of a compact cross section are required for development of HTC superconducting underground power cables. To save space of return coolant, a counter-flow cooling system appears promising. However, it is difficult to cool down long cables because of heat exchange between counter-flows due to high thermal conductivity of dielectric materials which separate both flows in range of liquid nitrogen temperature. We estimated temperature distributions analytically along model HTS power cables with counter-flow. Results of calculation showed that when liquid-nitrogen-impregnated polypropylene laminated paper was chosen for a dielectric material, great thickness was required to reduce heat exchange between counter-flows. We investigated various cable structures to optimize the counter-flow cooling system and cable size. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 7]
机译:开发HTC超导地下电力电缆需要建立长距离冷却技术并设计紧凑的横截面。为了节省回流冷却剂的空间,逆流冷却系统似乎很有希望。然而,由于介电材料的高热导率导致逆流之间的热交换,很难冷却长电缆,因为介电材料的高导热率在液氮温度范围内将两种流分开。我们以逆流方式分析了沿HTS型号电力电缆的温度分布。计算结果表明,当选择液氮浸渍的聚丙烯层压纸作为介电材料时,需要较大的厚度以减少逆流之间的热交换。我们研究了各种电缆结构,以优化逆流冷却系统和电缆尺寸。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:7]

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