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First electrical characterization of prototype 600 A HTS twisted-pair cables at different temperatures

First electrical characterization of prototype 600 A HTS twisted-pair cables at different temperatures
First electrical characterization of prototype 600 A HTS twisted-pair cables at different temperatures
Following the development of twisted-pair cables prepared with High Temperature Superconducting (HTS) tapes and
their initial tests at 4.2 K in liquid helium at CERN, the cable samples of 2 m lengths were subsequently tested in
flowing helium gas at temperatures between 10 K and 77 K at University of Southampton. A cryostat with optimized
hybrid HTS current leads was purposely built for the tests up to 2.5 kA. The cryostat has two separate helium flow
conduits, each accommodating a twisted pair and allowing independent temperature control. With the completion of
the tests on the twisted-pair cables, a 5 m long semi-flexible Nexans cryostat was also set up for the testing of
prototype HTS links assembled at CERN. The link, which is optimized for application to the remote powering of
LHC 600 A electrical circuits, consists of a compact multi-cable assembly with up to 25 twisted-pair 600 A HTS
tapes. The cables are cooled by a forced-flow of helium gas the inlet temperature of which can be changed in order to compare the electrical performance over a range of temperatures. The paper reports on the results of powering tests performed on the individual cables and the integration process for the forthcoming tests of the prototype links.
hts, cables, MgB2, Bi-2223, ybco
1337-1342
Yang, Y.
4cac858a-e0c0-4174-a839-05ca394fc51f
Young, E.A.
d3a881b0-a564-41f5-9843-34ae86da360f
Bailey, W.O.S.
c356b2e3-a783-4b4c-8c7b-521696d3b37c
Beduz, C.
2cbc6ece-3e8b-454b-86d6-3960596bd234
Ballarino, A
fbb2b272-16ce-4fcc-a2da-5fefa0ef16da
Yang, Y.
4cac858a-e0c0-4174-a839-05ca394fc51f
Young, E.A.
d3a881b0-a564-41f5-9843-34ae86da360f
Bailey, W.O.S.
c356b2e3-a783-4b4c-8c7b-521696d3b37c
Beduz, C.
2cbc6ece-3e8b-454b-86d6-3960596bd234
Ballarino, A
fbb2b272-16ce-4fcc-a2da-5fefa0ef16da

Yang, Y., Young, E.A., Bailey, W.O.S., Beduz, C. and Ballarino, A (2012) First electrical characterization of prototype 600 A HTS twisted-pair cables at different temperatures. [in special issue: Superconductivity Centennial Conference 2011] Physics Procedia, 36, 1337-1342. (doi:10.1016/j.phpro.2012.06.301).

Record type: Article

Abstract

Following the development of twisted-pair cables prepared with High Temperature Superconducting (HTS) tapes and
their initial tests at 4.2 K in liquid helium at CERN, the cable samples of 2 m lengths were subsequently tested in
flowing helium gas at temperatures between 10 K and 77 K at University of Southampton. A cryostat with optimized
hybrid HTS current leads was purposely built for the tests up to 2.5 kA. The cryostat has two separate helium flow
conduits, each accommodating a twisted pair and allowing independent temperature control. With the completion of
the tests on the twisted-pair cables, a 5 m long semi-flexible Nexans cryostat was also set up for the testing of
prototype HTS links assembled at CERN. The link, which is optimized for application to the remote powering of
LHC 600 A electrical circuits, consists of a compact multi-cable assembly with up to 25 twisted-pair 600 A HTS
tapes. The cables are cooled by a forced-flow of helium gas the inlet temperature of which can be changed in order to compare the electrical performance over a range of temperatures. The paper reports on the results of powering tests performed on the individual cables and the integration process for the forthcoming tests of the prototype links.

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More information

Published date: 2012
Keywords: hts, cables, MgB2, Bi-2223, ybco
Organisations: Engineering Science Unit

Identifiers

Local EPrints ID: 338018
URI: http://eprints.soton.ac.uk/id/eprint/338018
PURE UUID: 31b01b5a-9df6-4f94-be8c-c3ef8c4002c7
ORCID for Y. Yang: ORCID iD orcid.org/0000-0002-3874-6735

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Date deposited: 10 May 2012 10:08
Last modified: 15 Mar 2024 02:45

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Contributors

Author: Y. Yang ORCID iD
Author: E.A. Young
Author: W.O.S. Bailey
Author: C. Beduz
Author: A Ballarino

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