CCL

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001-es BibID:BIBFORM087681
Első szerző:Hervé, Alain
Cím:The CMS detector magnet / Alain Hervé, Trócsányi Zoltán, Szillási Zoltán, Zilizi Gyula for the CMS Collaboration
Dátum:2000
ISSN:1051-8223
Megjegyzések:CMS (Compact Muon Solenoid) is a general-purpose detector designed to run in mid-2005 at the highest luminosity at the LHC at CERN. Its distinctive features include a 6 m free bore diameter, 12.5 m long, 4 T superconducting solenoid enclosed inside a 10,000 tonne return yoke. The magnet will be assembled and tested on the surface by the end of 2003 before being transferred by heavy lifting means to a 90 m deep underground experimental area. The design and construction of the magnet is a 'common project' of the CMS Collaboration. It is organized by a CERN based group with strong technical and contractual participation by CEA Saclay, ETH Zurich, Fermilab Batavia IL, INFN Geneva, ITEP Moscow, University of Wisconsin and CERN. The return yoke, 21 m long and 14 m in diameter, is equivalent to 1.5 m of saturated iron interleaved with four muon stations. The yoke and the vacuum tank are being manufactured. The indirectly-cooled, pure-aluminium-stabilized coil is made up from five modules internally wound with four layers of a 20 kA mechanically reinforced conductor. The contracts for the conductor and the outer cryogenics have just been awarded, and the remaining coil parts, including winding, are being tendered worldwide in industry. The project is described, with emphasis on the present status.
Tárgyszavak:Természettudományok Kémiai tudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
Megjelenés:IEEE Transactions on Applied Superconductivity. - 10 : 1 (2000), p. 389-394. -
További szerzők:Trócsányi Zoltán (1961-) (fizikus) Szillási Zoltán (1971-) (fizikus) Zilizi Gyula (1965-) (fizikus) The CMS Collaboration
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001-es BibID:BIBFORM107820
035-os BibID:(cikkazonosító)5600606 (WOS)000753438200006 (Scopus)85123683904
Első szerző:Kósa János Árpád
Cím:Application of the Flux Transfer Theory Regarding SFCL in the Case of HVDC / Janos Arpad Kosa, Xiaojing Qin, G. Battistig
Dátum:2022
ISSN:1051-8223
Megjegyzések:A novel SFCL model for HVDC was created and the real short circuit current was measured. In the original grid, the prospective short circuit current was expected 570 A DC, in the novel solution, the reduced short circuit current was measured between 40-10 A DC. The applied superconducting closed tape loop was prepared by femtosecond laser at room temperature without any damage of the superconducting tape. This paper presents the measured currents of this test device during the fault and recovery time. The cutting parameters of the superconducting tape are also presented.
Tárgyszavak:Műszaki tudományok Villamosmérnöki tudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
Megjelenés:IEEE Transactions On Applied Superconductivity. - 32 : 4 (2022), p. 1-6. -
További szerzők:Qin, Xiaojing Battistig Gábor Kornél (1957-) (villamosmérnök)
Pályázati támogatás:TKP2020-IKA-04
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