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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Local compensation-rematch for major element failures in superconducting linacs with very high reliability and low beam loss
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Local compensation-rematch for major element failures in superconducting linacs with very high reliability and low beam loss

机译:对超导直线加速器中主要元件故障的局部补偿-重新匹配,具有很高的可靠性和低的束流损耗

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摘要

In order to achieve the extremely high reliability and availability in superconducting linacs required by some applications such as in accelerator-driven systems (ADS), a fault tolerance design is usually pursued. With the example of the China-ADS main linac, the failure effects of key elements such as RF cavities and focusing elements in different locations along the linac have been studied and the schemes of compensation by means of the local compensation-rematch method have been proposed. For cavity failures, by adjusting the settings of the neighboring cavities and focusing elements one can make sure that the Twiss parameters and beam energy are recovered to the nominal ones at the matching point. For solenoid failures in the low energy section, a novel method by using a neighbor cavity with reverse phase is used to maintain simultaneous acceleration and focusing in both the transverse and longitudinal phase planes. For quadrupole failures in the warm transitions in the high energy section, triplet focusing structure is adopted which can be converted locally into a doublet focusing in case of one quadrupole failure and the rematch method is proven very effective. With macro-particle simulations by TraceWin, it is found that the normalized rms emittance has no obvious growth and the halo emittance has modest growth after applying the local compensation-rematch in the cases mentioned above. In addition, a self-made code based on MATLAB has been developed to double check the simulations by TraceWin for the local compensation and rematch method.
机译:为了实现某些应用(例如加速器驱动系统(ADS))所需的超导直线加速器的极高可靠性和可用性,通常需要进行容错设计。以中国ADS主直线加速器为例,研究了沿直线加速器不同位置的RF腔和聚焦元件等关键元件的失效影响,并提出了采用局部补偿-复配方法的补偿方案。 。对于型腔失效,通过调整相邻型腔和聚焦元件的设置,可以确保将Twiss参数和束能量在匹配点恢复到标称值。对于低能段中的螺线管故障,使用了一种通过使用具有反相的相邻腔的新方法来维持同时的加速和在横向和纵向相平面上的聚焦。对于高能区暖过渡中的四极失效,采用了三重态聚焦结构,在一次四极失效的情况下,可以将其局部转换为双态聚焦,并且重配方法被证明是非常有效的。通过TraceWin进行的宏观粒子模拟,发现在上述情况下,应用局部补偿重匹配后,归一化rms发射率没有明显的增长,而晕轮发射率则有适度的增长。此外,已经开发了基于MATLAB的自制代码,以通过TraceWin对本地补偿和重匹配方法的仿真进行再次检查。

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    China Spollation Neutron Source, Institute of High Energy Physics, CAS, Dongguan 523803, China,Dongguan Institute of Neutron Science, Dongguan 523808, China,Key Laboratory of Particle Acceleration Physics and Technology, Institute of High Energy Physics, CAS, Beijing 100049, China;

    China Spollation Neutron Source, Institute of High Energy Physics, CAS, Dongguan 523803, China,Dongguan Institute of Neutron Science, Dongguan 523808, China,Key Laboratory of Particle Acceleration Physics and Technology, Institute of High Energy Physics, CAS, Beijing 100049, China;

    Key Laboratory of Particle Acceleration Physics and Technology, Institute of High Energy Physics, CAS, Beijing 100049, China;

    Institute of Nuclear Science and Technology, Sichuan University, Chengdu 610065, China;

    Key Laboratory of Particle Acceleration Physics and Technology, Institute of High Energy Physics, CAS, Beijing 100049, China;

    Key Laboratory of Particle Acceleration Physics and Technology, Institute of High Energy Physics, CAS, Beijing 100049, China;

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  • 正文语种 eng
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  • 关键词

    High power proton linac; High reliability; Low beam loss; Key element failures; Local compensation and rematch;

    机译:大功率质子直线加速器;高可靠性;低光束损失;关键要素故障;本地补偿和重赛;

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