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Testing beam-induced quench levels of LHC superconducting magnets

机译:测试光束感应的LHC超导磁体的失超水平

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摘要

In the years 2009-2013 the Large Hadron Collider (LHC) has been operated with the top beam energies of 3.5 TeV and 4 TeV per proton (from 2012) instead of the nominal 7 TeV. The currents in the superconducting magnets were reduced accordingly. To date only seventeen beam-induced quenches have occurred; eight of them during specially designed quench tests, the others during injection. There has not been a single beam- induced quench during normal collider operation with stored beam. The conditions, however, are expected to become much more challenging after the long LHC shutdown. The magnets will be operating at near nominal currents, and in the presence of high energy and high intensity beams with a stored energy of up to 362 MJ per beam. In this paper we summarize our efforts to understand the quench levels of LHC superconducting magnets. We describe beam-loss events and dedicated experiments with beam, as well as the simulation methods used to reproduce the observable signals. The simulated energy deposition in the coils is compared to the quench levels predicted by electro-thermal models, thus allowing to validate and improve the models which are used to set beam-dump thresholds on beam-loss monitors for Run 2.
机译:在2009-2013年间,大型强子对撞机(LHC)的顶束能量为每质子3.5 TeV和4 TeV(自2012年起),而不是标称的7 TeV。超导磁体中的电流相应减小。迄今为止,仅发生了十七次束流诱导的淬灭。其中有八项是在专门设计的淬火测试中进行的,其他是在注入过程中进行的。在正常的对撞机操作过程中,没有任何光束诱发的淬火现象。但是,预计在长期LHC关闭之后,情况将变得更具挑战性。磁铁将在接近标称电流的条件下工作,并且在存在高能量和高强度光束的情况下,每个光束的存储能量高达362 MJ。在本文中,我们总结了我们为了解LHC超导磁体的失超水平所做的努力。我们描述了束流损失事件和束流的专用实验,以及用于重现可观察信号的仿真方法。将线圈中模拟的能量沉积与电热模型预测的淬火水平进行比较,从而可以验证和改进用于设置运行2的光束损耗监视器上的光束倾卸阈值的模型。

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