XFEL
Transcription
XFEL
i XFEL X -Ray Free-Elect ron Laser Optimizing Magnetic Shielding vs. Cryogenics Configurations ILC (~16 000 cavités) i XFEL X -Ray Free-Elect ron Laser Configurations ILC (~10 000 cavités) i XFEL X -Ray Free-Elect ron Laser Configurations ILC (~10 000 cavités) i XFEL X -Ray Free-Elect ron Laser Double Blindage i XFEL X -Ray Free-Elect ron Laser Double Blindage i XFEL X -Ray Free-Elect ron Laser Cryonomics If I am allowed to extrapolate the 75% increase of Q shown by E. Kako with a double magnetic shielding, to ILC cavities with Eacc = 31.5 MV/m 0 and with the assumptions: grid power = 0,15 € /kWh@300 K CoP(2K) = 700 W/W magnetic shield = 1000€ / cavity cryogenics = 1 M€/100 W@2K Pdyn. = 5.5 kW@2K , 3.8 MW Pdyn. = 9.6 kW@2K , 6.7 MW @ 300 K € € Q0 = 8 1010 (RDR ) 05/12/2011 Q0 = 1.4 1010 O. Napoly 7 Magnetic Shielding Produced by MecaMagnetic from Aperam/Cryophy 1mm sheets Magnetic shields are qualified by the excellent dynamic cryogenic performance of XM-3 i XFEL X -Ray Free-Elect ron Laser 2. cw and lp operation; 3 experiments c. Dynamic heat load for Large Grain Cryomodule XM-3 cavities: vertical tests at 2K (7 Large Grain +1 Fine Grain cavity) 4.E+10 Qo 3.E+10 2.E+10 AC114 AC157 1.E+10 0 AC156 AC158 4 AC146 AC151 8 Eacc [MV/m] AC154 AC152 12 16 Measured dynamic heat load J. Sekutowicz, Towards More Flexibility in Operation of the XFEL Linac, DESY, October 25th, 2013 9 Conclusion i XFEL X -Ray Free-Elect ron Laser Increasing Q0 of ILC cavities by whatever means, is GREEN Better magnetic shielding is one possible cost efficient way.
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