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Heat transfer in electrical insulation of LHC cables cooled with superfluid helium

机译:用超流氦冷却的LHC电缆的电绝缘中的热传递

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摘要

The electrical insulation of the Large HadronCollider (LHC) cables constitutes a thermal barrier between theconductor and the superfluid helium bath. This can preventremoval of the heat dissipated in the cable by the current rise in thedipoles or by the beam losses. The main experimental results,obtained with stacks of insulated conductors representing a pieceof the actual coil, are given. The mock-ups vary only by thematerial composition and the structure of the electrical insulation.Analysis of the temperature distribution measured in theconductors as a function of the dissipated heat power makes itpossible to determine the dominant heat transfer mode in each typeof tested insulation and to classify these according to theirpermeability to superfluid helium. Thermal numerical modellingvalues of the thermal quantities characteristic of each insulation.The results of these studies have led to the choice of the cableinsulation of the LHC magnets. 2000 Elsevier Science Ltd. All rights reserved.
机译:大型强子对撞机(LHC)电缆的电绝缘构成了导体与超流体氦浴之间的热障。这可以防止由于偶极子中的电流上升或电子束损耗而消除电缆中散发的热量。给出了主要的实验结果,这些结果是由代表一部分实际线圈的绝缘导体堆叠而成的。实体模型仅因电绝缘材料的成分和结构而异。对导体中测得的温度分布的分析是根据散发的热功率进行的,因此有可能确定每种测试绝缘体的主要传热模式并进行分类根据它们对超流体氦的渗透性。每个绝缘体的热量特征的热数值建模值。这些研究的结果导致选择了LHC磁体的电缆绝缘。 2000 Elsevier ScienceLtd。保留所有权利。

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