LIPAc personnel protection system for realizing radiation licensing conditions on injector commissioning with deuteron beam

作者:Takahashi Hiroki*; Narita Takahiro; Kasugai Atsushi; Kojima Toshiyuki; Marqueta Alvaro; Nishiyama Koichi; Sakaki Hironao; Gobin Raphael
来源:Fusion Engineering and Design, 2016, 109: 1380-1385.
DOI:10.1016/j.fusengdes.2015.12.017

摘要

The performance validation of the Linear IFMIF Prototype Accelerator (LIPAc), up to the energy of 9 MeV deuteron beam with 125 mA continuous wave (CW), is planned in Rokkasho, Japan. There are three main phases of LIPAc performance validation: Injector commissioning, RFQ commissioning and LIPAc commissioning. Injector commissioning was started by H+ and D+ beam. To apply the radiation licensing for the Injector commissioning, the entering/leaving to/from accelerator vault should be under control, and access to the accelerator vault has to be prohibited for any person during the beam operation. The Personnel Protection System (PPS) was developed to adapt the radiation licensing conditions. The licensing requests that PPS must manage the accumulated D+ current. So, to manage the overall D+ beam time during injector operation, Pulse Duty Management System (PDMS) was developed as a configurable subsystem as part of the PPS. The PDMS was tested during H+ beam (as simulated D+) operation, to confirm that it can handle the beam inhibit from Injector before the beam accumulation is above the threshold value specified in the radiation licensing condition. In this paper, the design and configuration of these systems and the result of the tests are presented.

  • 出版日期2016-11-1
  • 单位中国地震局

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