Status and Highlights of the Pulsed Magnet Program as of summer 2010, mid-point in current award...
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Transcript of Status and Highlights of the Pulsed Magnet Program as of summer 2010, mid-point in current award...
Status and Highlights of the Pulsed Magnet Program
as of summer 2010, mid-point in current award period
• Delivered 350th science pulse > 70T in 75T magnets assembly. (March 2008)• Completed rebuild & rework of 100T outsert coils 1-4, (November 2008)• Completed assembly of 100T Outsert, (January 2009) • Science Program delivers 100th 85T pulse (Insert #1) (May 2009) • 1st insert fault , non destructive as predicted. (June 2009)• Completed conceptual design of Duplex user magnet upgrade. (October 2009)• Magnet Group awarded R&D 100 Award (MRI for Carry-on Liquids) (October 2009) • Science Program delivers 150th 85T pulse (Insert #2) (December 2009)• Completed conceptual design of 95T – 100T insert upgrade (May 2010)• Commissioned 4 MJ Capacitor bank for User Program (June 2010) • Insert #3 fabricated and delivered as a spare (June 2010)• Science Program delivers 177th 85T pulse (Insert #2) (July 2010) • Released Outsert Conductor Procurement Package (spare outsert work) (July 2010) • Complete 10mm CAD Package for 95T-100T Upgrade (August 2010)
WR
WR
WR
WR
Vision for the Pulsed Magnet Program (2012)
as of summer 2010, mid-point in current award period
• Deliver 2nd generation insert magnet upgrade (95T–100T ) (Jan 2011)• 95T attainable, 100T operations at proof of principal level
• Deliver duplex magnet technology (> 70T ops for user program) (June 2011)
• Complete fabrication of outsert coil replacements coils 3,4,5,6 (Oct 2011)
• Large cross section Cu-Nb conductor developed & delivered (July 2011)• Development in progress 2010 at Bochvar, #1 priority
• Production of outsert coils #1 & #2 using Cu-Nb conductor• Enable increase in field from Outsert circuit #1
TBD?
TBD?
Vision for the Pulsed Magnet Program (2017)
as of summer 2010, mid-point in current award period
• Delivering sustained 100 T science pulses using 2nd generation coil upgrades.
• Operating 10-50 MJ capacitor bank or new Lithium-ion battery bank.
• User facility operating at 80T–85T using duplex magnet technology optimized for new power technology. • coils use enhanced composite and conductor technologies.
• Implementing 3rd generation coil technology for generator magnets.• 3rd generation upgrades implement fault tolerant coil technology and enhanced
materials.