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Field Measurement to Evaluate Iron Saturation and Coil End Effects in a Modified Model Magnet of Beam Separation Dipole for the HL-LHC Upgrade

A beam separation dipole magnet for the high luminosity large hadron collider upgrade is developed. The development of the 2-m-long model magnet (MBXFS1) was initiated so as to evaluate the design and performance of the beam separation dipole magnet. In the first cold test in 2016, the quench perfor...

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Autores principales: Enomoto, Shun, Sugano, Michinaka, Nakamoto, Tatsushi, Suzuki, Kento, Okada, Naoki, Kawamata, Hiroshi, Sasaki, Ken-ichi, Ikemoto, Yukiko, Tanaka, Kenichi, Ohhata, Hirokatsu, Iida, Masahisa, Okada, Ryutaro, Higashi, Norio, Takahashi, Naoto, Ogitsu, Toru, Kimura, Nobuhiro, Musso, Andrea, Todesco, Ezio
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2018.2797204
http://cds.cern.ch/record/2311687
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author Enomoto, Shun
Sugano, Michinaka
Nakamoto, Tatsushi
Suzuki, Kento
Okada, Naoki
Kawamata, Hiroshi
Sasaki, Ken-ichi
Ikemoto, Yukiko
Tanaka, Kenichi
Ohhata, Hirokatsu
Iida, Masahisa
Okada, Ryutaro
Higashi, Norio
Takahashi, Naoto
Ogitsu, Toru
Kimura, Nobuhiro
Musso, Andrea
Todesco, Ezio
author_facet Enomoto, Shun
Sugano, Michinaka
Nakamoto, Tatsushi
Suzuki, Kento
Okada, Naoki
Kawamata, Hiroshi
Sasaki, Ken-ichi
Ikemoto, Yukiko
Tanaka, Kenichi
Ohhata, Hirokatsu
Iida, Masahisa
Okada, Ryutaro
Higashi, Norio
Takahashi, Naoto
Ogitsu, Toru
Kimura, Nobuhiro
Musso, Andrea
Todesco, Ezio
author_sort Enomoto, Shun
collection CERN
description A beam separation dipole magnet for the high luminosity large hadron collider upgrade is developed. The development of the 2-m-long model magnet (MBXFS1) was initiated so as to evaluate the design and performance of the beam separation dipole magnet. In the first cold test in 2016, the quench performance was not satisfactory because the coil prestress at the pole was completely released during excitation. After reassembly to improve the quench performance, the excitation test of the modified model magnet (MBXFS1b) was performed at 1.9 K in 2017 at KEK. Due to the large coil aperture and limited outer diameter of the iron yoke, the control of iron saturation effects on the field quality has been a design issue. Regarding the magnetic performance, field saturation effects on the transfer function and the multipole field variation along the excitation, and coil end effects to the straight section need to be evaluated by the field measurement. In this paper, field measurement results will be presented and the comparison with the three-dimensional field calculation will be discussed.
id oai-inspirehep.net-1664489
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16644892022-08-17T12:59:04Zdoi:10.1109/TASC.2018.2797204http://cds.cern.ch/record/2311687engEnomoto, ShunSugano, MichinakaNakamoto, TatsushiSuzuki, KentoOkada, NaokiKawamata, HiroshiSasaki, Ken-ichiIkemoto, YukikoTanaka, KenichiOhhata, HirokatsuIida, MasahisaOkada, RyutaroHigashi, NorioTakahashi, NaotoOgitsu, ToruKimura, NobuhiroMusso, AndreaTodesco, EzioField Measurement to Evaluate Iron Saturation and Coil End Effects in a Modified Model Magnet of Beam Separation Dipole for the HL-LHC UpgradeAccelerators and Storage RingsA beam separation dipole magnet for the high luminosity large hadron collider upgrade is developed. The development of the 2-m-long model magnet (MBXFS1) was initiated so as to evaluate the design and performance of the beam separation dipole magnet. In the first cold test in 2016, the quench performance was not satisfactory because the coil prestress at the pole was completely released during excitation. After reassembly to improve the quench performance, the excitation test of the modified model magnet (MBXFS1b) was performed at 1.9 K in 2017 at KEK. Due to the large coil aperture and limited outer diameter of the iron yoke, the control of iron saturation effects on the field quality has been a design issue. Regarding the magnetic performance, field saturation effects on the transfer function and the multipole field variation along the excitation, and coil end effects to the straight section need to be evaluated by the field measurement. In this paper, field measurement results will be presented and the comparison with the three-dimensional field calculation will be discussed.oai:inspirehep.net:16644892018
spellingShingle Accelerators and Storage Rings
Enomoto, Shun
Sugano, Michinaka
Nakamoto, Tatsushi
Suzuki, Kento
Okada, Naoki
Kawamata, Hiroshi
Sasaki, Ken-ichi
Ikemoto, Yukiko
Tanaka, Kenichi
Ohhata, Hirokatsu
Iida, Masahisa
Okada, Ryutaro
Higashi, Norio
Takahashi, Naoto
Ogitsu, Toru
Kimura, Nobuhiro
Musso, Andrea
Todesco, Ezio
Field Measurement to Evaluate Iron Saturation and Coil End Effects in a Modified Model Magnet of Beam Separation Dipole for the HL-LHC Upgrade
title Field Measurement to Evaluate Iron Saturation and Coil End Effects in a Modified Model Magnet of Beam Separation Dipole for the HL-LHC Upgrade
title_full Field Measurement to Evaluate Iron Saturation and Coil End Effects in a Modified Model Magnet of Beam Separation Dipole for the HL-LHC Upgrade
title_fullStr Field Measurement to Evaluate Iron Saturation and Coil End Effects in a Modified Model Magnet of Beam Separation Dipole for the HL-LHC Upgrade
title_full_unstemmed Field Measurement to Evaluate Iron Saturation and Coil End Effects in a Modified Model Magnet of Beam Separation Dipole for the HL-LHC Upgrade
title_short Field Measurement to Evaluate Iron Saturation and Coil End Effects in a Modified Model Magnet of Beam Separation Dipole for the HL-LHC Upgrade
title_sort field measurement to evaluate iron saturation and coil end effects in a modified model magnet of beam separation dipole for the hl-lhc upgrade
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2018.2797204
http://cds.cern.ch/record/2311687
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