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Main improvements of LHC Cryogenics Operation during Run 2 (2015-2018)

机译:运行期间LHC低温操作的主要改进(2015-2018)

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After the successful Run 1 (2010-2012), the LHC entered its first Long Shutdown period (LSI, 2013-2014). During LSI the LHC cryogenic system went under a complete maintenance and consolidation program. The LHC resumed operation in 2015 with an increased beam energy from 4 TeV to 6.5 TeV. Prior to the new physics Run 2 (2015-2018), the LHC was progressively cooled down from ambient to the 1.9 K operation temperature. The LHC has resumed operation with beams in April 2015. Operational margins on the cryogenic capacity were reduced compared to Run 1, mainly due to the observed higher than expected electron-cloud heat load coming from increased beam energy and intensity. Maintaining and improving the cryogenic availability level required the implementation of a series of actions in order to deal with the observed heat loads. This paper describes the results from the process optimization and update of the control system, thus allowing the adjustment of the non-isothermal heat load at 4.5 - 20 K and the optimized dynamic behaviour of the cryogenic system versus the electron-cloud thermal load. Effects from the new regulation settings applied for operation on the electrical distribution feed-boxes and inner triplets will be discussed. The efficiency of the preventive and corrective maintenance, as well as the benefits and issues of the present cryogenic system configuration for Run 2 operational scenario will be described. Finally, the overall availability results and helium management of the LHC cryogenic system during the 2015-2016 operational period will be presented.
机译:成功运行后1(2010-2012),LHC进入了第一个长期关闭期(LSI,2013-2014)。在LSI期间,LHC低温系统在完整的维护和整合计划下进行。 LHC于2015年恢复运行,从4 TEV到6.5 TEV的光束能量增加。在新物理运行之前(2015-2018)之前,将LHC从环境中逐渐降低到1.9K操作温度。 LHC于2015年4月恢复了横梁的运行。与运行1相比,低温容量的操作边距,主要是由于观察到的高于来自增加的光束能量和强度的预期电子云热负荷。维持和提高低温可用性水平要求实施一系列动作,以便处理观察到的热负荷。本文介绍了控制系统的过程优化和更新的结果,从而允许在4.5 - 20 k下调节非等温热负荷以及低温系统的优化动态行为与电子云热负荷。将讨论施加用于电气分配馈电和内三胞胎的新调节设置的影响。将描述预防性和纠正性维护的效率,以及运行2运行方案的当前低温系统配置的益处和问题。最后,将提出2015 - 2016年运营期间LHC低温系统的总体可用性结果和氦管理。

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