11 21 2013
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11/21/2013 Location of Facility Primary Beamline MI Abort Line - PowerPoint PPT Presentation

Photo by Marty Murphy Michael Geelhoed AD EBD 11/21/2013 Location of Facility Primary Beamline MI Abort Line Reconfiguration Extraction Michael Geelhoed AD EBD 11/21/2013 Location of Facility 11/21/2013 Michael Geelhoed AD


  1. Photo by Marty Murphy Michael Geelhoed AD EBD 11/21/2013

  2. • Location of Facility • Primary Beamline • MI Abort Line Reconfiguration • Extraction Michael Geelhoed AD EBD 11/21/2013

  3. Location of Facility 11/21/2013 Michael Geelhoed AD EBD

  4. Location of Facility 11/21/2013 Michael Geelhoed AD EBD

  5. Location of Facility 11/21/2013 Michael Geelhoed AD EBD

  6. NuStorm Primary Beamline 40 35 30 25 Half Width (mm) 20 15 10 5 0 0 200 400 600 800 1000 Station (ft) XBEAM (95%) YBEAM (95%) Aper X Aper Y 11/21/2013 Michael Geelhoed AD EBD

  7. MI Abort line Reconfiguration 40 35 30 Half Width (mm) 25 XBEAM (95%) YBEAM (95%) 20 Aper X 15 Aper Y 10 5 0 0 50 100 150 200 250 300 350 400 450 500 Q001 Q002 Q003 Bermpipe 40 35 30 Half width (mm) 25 XBEAM (95%) 20 YBEAM (95%) 15 Aper X 10 Aper Y 5 0 0 50 100 150 200 250 300 350 400 450 500 Stationing (ft) 11/21/2013 Michael Geelhoed AD EBD

  8. MI Abort line Reconfiguration Current (Amps) Present Future Q001 2770.5 1883.2 Q002 2828.0 1423.9 Q003 2770.5 853.0 Move Q002 and Q003 upstream by 30’ and 23’, along with different currents, NS/Abort beam reduces in size through the bermpipe 11/21/2013 Michael Geelhoed AD EBD

  9. MI Abort line Reconfiguration Current (Amps) Present Future Q001 2770.5 1883.2 Q002 2828.0 1423.9 Q003 2770.5 853.0 Compiled from Steve Hays* 11/21/2013 Michael Geelhoed AD EBD

  10. MI Abort line Reconfiguration Current (Amps) Present Future Q001 2770.5 1883.2 Q002 2828.0 1423.9 Q003 2770.5 853.0 11/21/2013 Michael Geelhoed AD EBD

  11. MI Abort line Reconfiguration Current (Amps) Present Future B2 2964.1 2964.1 Compiled from Steve Hays* 11/21/2013 Michael Geelhoed AD EBD

  12. MI Abort line Reconfiguration With these changes we are pursuing an Accelerator Improvement Project, or AIP. This AIP will be many focused on converting the Abort line magnets to their own individual power supplies. Currently there are multiple AIPs majority for the Muon Campus here at Fermilab. • Cryo AIP (Muon Campus) • Muon Campus Beam Transport • Muon Campus Delivery Ring AIP • Muon Campus Recycler RF AIP • MI Gap Clearing Kickers Each AIP has a written document called a Project Execution Plan, or PEP. With these calculations completed by Steve Hays of AD Electrical Engineering, we can continue this effort. Currently we are starting to gather this information and propose to AD that the purpose of this AIP is for twofold. First create a simplified extraction line for MI, and second have tunable magnets for NuStorm in the future. This AIP requires $105,000 for the power supply, cabling, and electricians. Not all details though have been worked out i.e. location of power supplies, control cards, etc. 11/21/2013 Michael Geelhoed AD EBD

  13. Extraction Currently MI Abort line has 2 “long” kickers for extraction. These kickers are for full turn at flattop ~5% . NuStorm does not require this type. It requires 3 partial turn kickers such as LBNE style or “short” kickers ~1%. 11/21/2013 Michael Geelhoed AD EBD

  14. Extraction MI Abort Kickers In order to use the short kickers these two long kickers will need to be moved creating a new bend center… 11/21/2013 Michael Geelhoed AD EBD

  15. Extraction MI Abort Kickers In order to use the short kickers these two long kickers will need to be moved creating a new bend center… 11/21/2013 Michael Geelhoed AD EBD

  16. Extraction LBNE MI Beam in Booster Batches 11/21/2013 Michael Geelhoed AD EBD

  17. Extraction NuStorm Beam extraction at the end deflects the last NuMI/LBNE Beam using Abort Kickers 11/21/2013 Michael Geelhoed AD EBD

  18. Extraction NuStorm Beam extraction at the beginning with fast rise and fall time kicker doesn’t deflect NuMI or LBNE Beam. Basically we are recreating our MI-52 kicker scenario for Collider Operation 11/21/2013 Michael Geelhoed AD EBD

  19. Needs to be done • Continue AIP via PEP document • Research more on Kicker configuration Michael Geelhoed AD EBD 11/21/2013

  20. Special thanks to: Steve Hays, Chris Jensen Photo by Marty Murphy 11/21/2013 Michael Geelhoed AD EBD

  21. Photo by Marty Murphy 11/21/2013 Michael Geelhoed AD EBD

  22. MI Abort line Reconfiguration With these changes we are pursuing a Accelerator Improvement Project, or AIP. This AIP will be many focused on converting the Abort line magnets to their own individual power supplies. Currently there are multiple AIPs for the Muon Campus here at Fermilab. • Cryo AIP (Muon Campus) ($9.74M) • Muon Campus Beam Transport • Muon Campus Delivery Ring AIP • Muon Campus Recycler RF AIP ($8.6M) • MI Gap Clearing Kickers ($4.4M) Each AIP has a written document called a Project Execution Plan, or PEP. With these calculations completed by Steve Hays of AD Electrical Engineering, we can continue this effort. Currently we are starting to gather this information and propose to AD that the purpose of this AIP is for twofold. First create a simplified extraction line for MI, and second have tunable magnets for NuStorm in the future. This AIP requires $105,000 for the power supply, cabling, and electricians. Not all details though have been worked out. 11/21/2013 Michael Geelhoed AD EBD

  23. Extraction LBNE has cost estimated ~$6.7 M for 5 kicker magnets fully loaded. 11/21/2013 Michael Geelhoed AD EBD

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