Commissioning Test of ATLAS End-Cap Toroidal Magnets

The system of superconducting toroids in the ATLAS experiment at CERN consists of three magnets. The Barrel Toroid was assembled and successfully tested in 2006. Next, two End-Cap Toroids have been tested on surface at 77 K and installed in the cavern, 100-m underground. The End Cap Toroids are base...

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Veröffentlicht in:IEEE transactions on applied superconductivity 2009-06, Vol.19 (3), p.1307-1310
Hauptverfasser: Dudarev, A., ten Kate, H.H.J., Buskop, J., Foussat, A., Benoit, P., Jeckel, M., Olyunin, A., Kopeykin, N., Stepanov, V., Deront, L., Olesen, G., Pons, X., Ravat, S., Sbrissa, E., Barth, K., Bremer, J., Delruelle, N., Metselaar, J., Pengo, R., Pirotte, O., Baynham, D.E., Carr, F.S., Holtom, E.
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Sprache:eng
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Zusammenfassung:The system of superconducting toroids in the ATLAS experiment at CERN consists of three magnets. The Barrel Toroid was assembled and successfully tested in 2006. Next, two End-Cap Toroids have been tested on surface at 77 K and installed in the cavern, 100-m underground. The End Cap Toroids are based on Al stabilized Nb-Ti/Cu Rutherford cables, arranged in double pancake coils and conduction cooled at 4.6 K. The nominal current is 20.5 kA at 4.1 T peak field in the windings and the stored energy is 250 MJ per toroid. Prior to final testing of the entire ATLAS Toroidal system, each End Cap Toroid passed a commissioning test up to 21 kA to guarantee a reliable performance in the final assembly. In this paper the test results are described. It includes the stages of test preparation, isolation vacuum pumping and leak testing, cooling down, step-by-step charging to full current, training quenches and quench recovery. By fast discharges the quench detection and protection system was checked to demonstrate a safe energy distribution within the magnet after a quench or a triggered fast dump.
ISSN:1051-8223
1558-2515
DOI:10.1109/TASC.2009.2019223