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Technical Analysis and Statistics from Long Term Helium Cryoplant Operation with Experimental Superconducting Magnets at CERN

机译:CERN实验超导磁体长期氦冷冻装置运行的技术分析和统计

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摘要

CERN regularly uses a large number of liquid helium cryoplants for cooling the superconducting magnets of large particle detectors. They are installed in the experimental areas of the electron-positron collider LEP and the proton (and heavy ion) accelerator SPS for the observation of high-energy interactions of elementary particles. The typical cold mass of a detector magnet ranges from 1 to 40 tons, and typical cryoplant cooling capacities are between 400 and 800 W/4.5 K entropy equivalent. Operation must be very flexible to meet the varying experimental requirements. We intend to present technical data of the system and statistics from over 180'000 running hours during the four years from 1992 to 1995. Operation includes phases of cool-down, steady-state cooling, recovery after magnet quench or other incidents and warm-up of the superconducting magnets. Emphasis will be laid on the analysis of fault conditions, multiple interaction between perturbations and consequences for the users of liquid helium supply interruption.
机译:欧洲核子研究组织经常使用大量液态氦冷冻装置来冷却大颗粒探测器的超导磁体。它们安装在电子-正电子对撞机LEP和质子(和重离子)促进剂SPS的实验区域中,用于观察基本粒子的高能相互作用。探测器磁铁的典型冷量为1至40吨,而低温设备的典型冷却能力在400至800 W / 4.5 K熵当量之间。操作必须非常灵活,才能满足不断变化的实验要求。我们打算提供从1992年到1995年这4年中超过180,000个运行小时的系统技术数据和统计数据。操作包括冷却,稳态冷却,磁体淬火或其他事件后恢复以及预热等阶段。超导磁体。重点将放在分析故障条件,扰动之间的多重相互作用以及液氦供应中断给用户带来的后果上。

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