Multi-Physics Analysis of the Fermilab Booster RF Cavity

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After about 40 years of operation the RF accelerating cavities in Fermilab Booster need an upgrade to improve their reliability and to increase the repetition rate in order to support a future experimental program. An increase in the repetition rate from 7 to 15 Hz entails increasing the power dissipation in the RF cavities, their ferrite loaded tuners, and HOM dampers. The increased duty factor requires careful modelling for the RF heating effects in the cavity. A multi-physic analysis investigating both the RF and thermal properties of Booster cavity under various operating conditions is presented in this paper.

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3 pages

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Awida, M.; Reid, J.; Yakovlev, V.; Lebedev, V.; Khabiboulline, T. & Champion, M. May 14, 2012.

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This article is part of the collection entitled: Office of Scientific & Technical Information Technical Reports and was provided by the UNT Libraries Government Documents Department to the UNT Digital Library, a digital repository hosted by the UNT Libraries. It has been viewed 22 times. More information about this article can be viewed below.

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After about 40 years of operation the RF accelerating cavities in Fermilab Booster need an upgrade to improve their reliability and to increase the repetition rate in order to support a future experimental program. An increase in the repetition rate from 7 to 15 Hz entails increasing the power dissipation in the RF cavities, their ferrite loaded tuners, and HOM dampers. The increased duty factor requires careful modelling for the RF heating effects in the cavity. A multi-physic analysis investigating both the RF and thermal properties of Booster cavity under various operating conditions is presented in this paper.

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3 pages

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  • Journal Name: Conf.Proc.C1205201:3347-3349,2012; Conference: Presented at the 3rd International Particle Accelerator Conference (IPAC-2012), New Orleans, Louisiana, 20-25 May 2012

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  • Report No.: FERMILAB-CONF-12-164
  • Grant Number: AC02-07CH11359
  • Office of Scientific & Technical Information Report Number: 1048444
  • Archival Resource Key: ark:/67531/metadc845356

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  • May 14, 2012

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  • May 19, 2016, 9:45 a.m.

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  • July 21, 2020, 12:22 p.m.

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Awida, M.; Reid, J.; Yakovlev, V.; Lebedev, V.; Khabiboulline, T. & Champion, M. Multi-Physics Analysis of the Fermilab Booster RF Cavity, article, May 14, 2012; Batavia, Illinois. (https://digital.library.unt.edu/ark:/67531/metadc845356/: accessed July 16, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.

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