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Published byHelen Terry Modified over 8 years ago
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Page 1 CRYOMODULE 650 (TESLA Style) Stand Alone Tom Peterson and Yuriy Orlov Collaboration Meeting 25 Jan 2011
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Page 2 Cryo Schematic -- flow through 300 mm pipe
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Page 3 Cryo Schematic -- empty 300 mm pipe for support only
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Page 4 Pipe sizes
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Concept Use an open 300 mm dia pipe as the support structure backbone –Open to insulating vacuum –Direct connection from 2-phase pipe to vapor return line via heat exchanger –Direct connection from 2-phase pipe to vent line –2-phase pipe sized large for venting from one end Advantages –300 mm pipe open for handling with present tooling –No end forces on 300 mm pipe or connections to it
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Page 6 End Plate Beam Vacuum Vessel Cold mass supports (2+1) Power MC (8) 650 MHz Cryomodule (Tesla Style-Stand Alone)
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Page 7 Fix. SupportSld. Support 300mm pipe 650 MHz cavity Gate Valve End Plate 650 MHz Layout
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Page 8 Heat exchanger 300mm pipe Cryo-feed snout with cryogenic connections Gate Valve 650 MHz Cryomodule. End plate not shown.
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Page 9 48” vacuum vessel pipe 300 mm pipe 80K shield, pipes: (Nom: 35mm-ID) Warm up-cool down pipe (nom 25mm ID) 4K return pipe (nom 25mm ID) 2-Phase pipe (161mm-ID) 80K Return pipe 4K Return pipe (?) X-Y Section
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Page 10 Two He reservoirs with level sensor Cavity needle supports VAT needle supports (?) Cavity string & 300mm pipe
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Page 11 300 mm pipe DS end US end Thermal compensator Flange should have a “hard” connection with 300mm pipe U-turn- 2-phase connect to heat exchanger 2-Phase pipe & Cavity string
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Some design issues Uniform cooling of 300 mm pipe –During cool-down and warm-up –During steady-state operation –Thermal straps from 2-phase pipe (?) 300 mm pipe may carry 2-phase pipe pressure forces via supports to 2-phase pipe end flanges or elbows –Low force during normal 2 K, 31 mbar operation Clean room assembly procedure followed by closure of beam vacuum with end cap on insulating vacuum -- interference with vacuum valves
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Page 13 Cavity He vessel (proposal)
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