调试第一个大型强子对撞机扇区的低温系统

F. Millet, S. Claudet, G. Ferlin, A. Perin, R. Rabehl, G. Riddone, L. Ronayette, L. Serio, M. Soubiran, L. Tavian
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引用次数: 6

摘要

大型强子对撞机由8个具有超导磁体和加速腔的扇区组成,需要一个提供高冷却能力的复杂低温系统(每个扇区在4.5 K时相当于18 kW,在1.8 K时相当于2.4 W,在大型冷箱中产生,并通过3.3公里的低温传输线进行分配)。自2000年以来对低温子系统(冷冻剂储存、冰箱、低温传输线路和配电箱)进行了单独的接收测试后,自2006年11月以来,第一个大型强子对撞机扇区的低温系统已开始调试。在简要介绍了LHC低温系统及其特性之后,报告了调试详细的准备阶段(压力和泄漏测试,电路调节和冲洗),冷却序列(包括低温流体的处理,磁铁供电阶段和最后的预热阶段)。关于第一个大型强子对撞机部门的试运行的初步结论将在审查已经解决或仍待解决的关键点后得出。论文的最后一部分从LHC剩余扇区调试和束流注入试验的角度对LHC低温系统的首次运行经验进行了报告。
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Commissioning the cryogenic system of the first LHC sector
The LHC machine, composed of eight sectors with superconducting magnets and accelerating cavities, requires a complex cryogenic system providing high cooling capacities (18 kW equivalent at 4.5 K and 2.4 W at 1.8 K per sector produced in large cold boxes and distributed via 3.3-km cryogenic transfer lines). After individual reception tests of the cryogenic subsystems (cryogen storages, refrigerators, cryogenic transfer lines and distribution boxes) performed since 2000, the commissioning of the cryogenic system of the first LHC sector has been under way since November 2006. After a brief introduction to the LHC cryogenic system and its specificities, the commissioning is reported detailing the preparation phase (pressure and leak tests, circuit conditioning and flushing), the cool-down sequences including the handling of cryogenic fluids, the magnet powering phase and finally the warm-up. Preliminary conclusions on the commissioning of the first LHC sector will be drawn with the review of the critical points already solved or still pending. The last part of the paper reports on the first operational experience of the LHC cryogenic system in the perspective of the commissioning of the remaining LHC sectors and the beam injection test.
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