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TRACKING TOOLS TO ESTIMATE THE QUENCH TIME CONSTANTS FOR MAGNET FAILURES IN LHC

机译:跟踪工具来估算LHC中磁铁故障的淬火时间常数

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At LHC, beam losses, with about 360 MJ of stored energy per beam at nominal collision operation, are potentially dangerous for the accelerator equipment and can also affect the operational efficiency by inducing quenches in superconducting magnets. Magnet failures may affect the beam leading to proton losses primarily in collimators and secondarily in superconducting magnets due to scattering of protons from collimator jaws. The evolution of the beam during magnet failures has been simulated using MAD-X with a variable magnetic field. The impacts of particles in the collimators have been recorded as a function of time. A second program, CollTrack, has been used to determine the loss patterns of scattered particles from each collimator as a function of the initial impact parameter. The magnets that are likely to quench are identified and an estimation of the time between the beginning of a failure and a quench is obtained by combining the results from the simulations. The time to a start of a quench is a relevant parameter to determine the dump threshold of beam loss monitors in order to optimize protection redundancy and operation smoothness for LHC.
机译:在LHC,梁损耗,每个光束的梁损失在标称碰撞操作中,对加速器设备可能潜在危险,并且还可以通过在超导磁体中诱导淬火来影响操作效率。由于来自准直钳口的质子的散射,磁体故障可能影响主要用于准直器的质子损失,并且其次在超导磁体中。使用具有可变磁场的Mad-X模拟磁体故障期间光束的演变。颗粒在准直器中的影响已被记录为时间的函数。已经使用第二个程序,Colltrack,以确定来自每个准直器的散射粒子的丢失模式作为初始冲击参数的函数。识别可能淬火的磁铁并通过组合模拟结果来获得失败的开始和淬火之间的时间。熄灭开始的时间是确定波束损耗监视器的转储阈值的相关参数,以优化LHC的保护冗余和操作平滑度。

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