Effect of the magnetic material on AC losses in HTS conductors in AC magnetic field carrying AC transport current

This paper presents an investigation on the AC losses in several typical superconducting composite conductors using the H-formulation model. A single superconducting strip with ferromagnetic substrate or cores and a stack of coated conductors with ferromagnetic substrates are studied. We consider al...

Full description

Bibliographic Details
Main Authors: Xing-Xing Wan, Chen-Guang Huang, Hua-Dong Yong, You-He Zhou
Format: Article
Language:English
Published: AIP Publishing LLC 2015-11-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4936652
id doaj-c634a1ae3043454f8f65467d27d8082f
record_format Article
spelling doaj-c634a1ae3043454f8f65467d27d8082f2020-11-24T22:24:21ZengAIP Publishing LLCAIP Advances2158-32262015-11-01511117139117139-1710.1063/1.4936652086511ADVEffect of the magnetic material on AC losses in HTS conductors in AC magnetic field carrying AC transport currentXing-Xing Wan0Chen-Guang Huang1Hua-Dong Yong2You-He Zhou3Key Laboratory of Mechanics on Environment and Disaster in Western China, The Ministry of Education of China, and Department of Mechanics and Engineering Sciences, College of Civil Engineering and Mechanics, Lanzhou University, Lanzhou, Gansu 730000, PR ChinaKey Laboratory of Mechanics on Environment and Disaster in Western China, The Ministry of Education of China, and Department of Mechanics and Engineering Sciences, College of Civil Engineering and Mechanics, Lanzhou University, Lanzhou, Gansu 730000, PR ChinaKey Laboratory of Mechanics on Environment and Disaster in Western China, The Ministry of Education of China, and Department of Mechanics and Engineering Sciences, College of Civil Engineering and Mechanics, Lanzhou University, Lanzhou, Gansu 730000, PR ChinaKey Laboratory of Mechanics on Environment and Disaster in Western China, The Ministry of Education of China, and Department of Mechanics and Engineering Sciences, College of Civil Engineering and Mechanics, Lanzhou University, Lanzhou, Gansu 730000, PR ChinaThis paper presents an investigation on the AC losses in several typical superconducting composite conductors using the H-formulation model. A single superconducting strip with ferromagnetic substrate or cores and a stack of coated conductors with ferromagnetic substrates are studied. We consider all the coated conductors carrying AC transport currents and simultaneously exposed to perpendicular AC magnetic fields. The influences of the amplitude, frequency, phase difference and ferromagnetic materials on the AC losses are investigated. The results show that the magnetization losses of single strip and stacked strips have similar characteristics. The ferromagnetic substrate can increase the magnetization loss at low magnetic field, and decrease the loss at high magnetic field. The ferromagnetic substrate can obviously increase the transport loss in stacked strips. The trends of total AC losses of single strip and stacked strips are similar when they are carrying current or exposed to a perpendicular magnetic field. The effect of the frequency on the total AC losses of single strip is related to the amplitude of magnetic field. The AC losses decrease with increasing frequency in low magnetic field region while increase in high magnetic field region. As the phase difference changes, there is a periodic variation for the AC losses. Moreover, when the strip is under only the transport current and magnetic field, the ferromagnetic cores will increase the AC losses for large transport current or field.http://dx.doi.org/10.1063/1.4936652
collection DOAJ
language English
format Article
sources DOAJ
author Xing-Xing Wan
Chen-Guang Huang
Hua-Dong Yong
You-He Zhou
spellingShingle Xing-Xing Wan
Chen-Guang Huang
Hua-Dong Yong
You-He Zhou
Effect of the magnetic material on AC losses in HTS conductors in AC magnetic field carrying AC transport current
AIP Advances
author_facet Xing-Xing Wan
Chen-Guang Huang
Hua-Dong Yong
You-He Zhou
author_sort Xing-Xing Wan
title Effect of the magnetic material on AC losses in HTS conductors in AC magnetic field carrying AC transport current
title_short Effect of the magnetic material on AC losses in HTS conductors in AC magnetic field carrying AC transport current
title_full Effect of the magnetic material on AC losses in HTS conductors in AC magnetic field carrying AC transport current
title_fullStr Effect of the magnetic material on AC losses in HTS conductors in AC magnetic field carrying AC transport current
title_full_unstemmed Effect of the magnetic material on AC losses in HTS conductors in AC magnetic field carrying AC transport current
title_sort effect of the magnetic material on ac losses in hts conductors in ac magnetic field carrying ac transport current
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2015-11-01
description This paper presents an investigation on the AC losses in several typical superconducting composite conductors using the H-formulation model. A single superconducting strip with ferromagnetic substrate or cores and a stack of coated conductors with ferromagnetic substrates are studied. We consider all the coated conductors carrying AC transport currents and simultaneously exposed to perpendicular AC magnetic fields. The influences of the amplitude, frequency, phase difference and ferromagnetic materials on the AC losses are investigated. The results show that the magnetization losses of single strip and stacked strips have similar characteristics. The ferromagnetic substrate can increase the magnetization loss at low magnetic field, and decrease the loss at high magnetic field. The ferromagnetic substrate can obviously increase the transport loss in stacked strips. The trends of total AC losses of single strip and stacked strips are similar when they are carrying current or exposed to a perpendicular magnetic field. The effect of the frequency on the total AC losses of single strip is related to the amplitude of magnetic field. The AC losses decrease with increasing frequency in low magnetic field region while increase in high magnetic field region. As the phase difference changes, there is a periodic variation for the AC losses. Moreover, when the strip is under only the transport current and magnetic field, the ferromagnetic cores will increase the AC losses for large transport current or field.
url http://dx.doi.org/10.1063/1.4936652
work_keys_str_mv AT xingxingwan effectofthemagneticmaterialonaclossesinhtsconductorsinacmagneticfieldcarryingactransportcurrent
AT chenguanghuang effectofthemagneticmaterialonaclossesinhtsconductorsinacmagneticfieldcarryingactransportcurrent
AT huadongyong effectofthemagneticmaterialonaclossesinhtsconductorsinacmagneticfieldcarryingactransportcurrent
AT youhezhou effectofthemagneticmaterialonaclossesinhtsconductorsinacmagneticfieldcarryingactransportcurrent
_version_ 1725761752716541952