首页> 外文会议>Advances in Cryogenic Engineering Vol.45, Pt.B >A LOW HEAT INLEAK CRYOGENIC STATION FOR TESTING HTS CURRENT LEADS FOR THE LARGE HADRON COLLIDER
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A LOW HEAT INLEAK CRYOGENIC STATION FOR TESTING HTS CURRENT LEADS FOR THE LARGE HADRON COLLIDER

机译:低热渗漏低温站,用于测试大型强子弹头的高温超导电流铅

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The LHC will be equipped with about 8000 superconducting magnets of all types. The total current to be transported into the cryogenic enclosure amounts to some 3360 kA. In order to reduce the heat load into the liquid helium, CERN intends to use High Temperature Superconducting (HTS) material for leads having current ratings up to 13 kA. The resistive part of the leads is cooled by forced flow of gaseous helium between 20 K and 300 K. The HTS part of the lead is immersed in a 4.5 K liquid helium bath, operates in self cooling conditions and is hydraulically separated from the resistive part. A cryogenic test station has been designed and built in order to assess the thermal and electrical performances of 13 kA prototype current leads. We report on the design, commissioning and operation of the cryogenic test station and illustrate its performance by typical test results of HTS current leads.
机译:大型强子对撞机将配备约8000种所有类型的超导磁体。传输到低温外壳中的总电流约为3360 kA。为了减少进入液态氦的热负荷,CERN打算对额定电流高达13 kA的引线使用高温超导(HTS)材料。引线的电阻部分通过强制在20 K和300 K之间的气态氦气冷却。引线的HTS部分浸入4.5 K液氦浴中,在自冷却条件下运行,并与电阻部分液压分离。为了评估13 kA原型电流引线的热和电性能,已经设计并建造了一个低温测试站。我们报告低温测试站的设计,调试和操作,并通过HTS电流引线的典型测试结果说明其性能。

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