Electromagnetic-Structure Transient Coupling Analysis of Large Cross-Sectional High Voltage Cables

The cable cleats play a role in fixing and supporting the cables. The cable cleats will withstand very large electromotive force when the grids are short-circuited. The deterioration of their mechanical properties may cause a serious threat to the stable operation of the grids. In this paper, the se...

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Main Authors: Na SUN, Shengchun LIU, Aibin XU, Jiajun SI
Format: Article
Language:zho
Published: State Grid Energy Research Institute 2021-04-01
Series:Zhongguo dianli
Subjects:
Online Access:https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202006263
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author Na SUN
Shengchun LIU
Aibin XU
Jiajun SI
author_facet Na SUN
Shengchun LIU
Aibin XU
Jiajun SI
author_sort Na SUN
collection DOAJ
description The cable cleats play a role in fixing and supporting the cables. The cable cleats will withstand very large electromotive force when the grids are short-circuited. The deterioration of their mechanical properties may cause a serious threat to the stable operation of the grids. In this paper, the sequential coupling method of load transfer was used to establish the electromagnetic-structure finite element model of the cable cleats system. Based on Maxwell's electromagnetic theory and virtual displacement method, the transient electromagnetic field analysis of the cable was performed to obtain its magnetic field distribution and short-circuit electromotive force. As an excitation source, the transient dynamic analysis of the cable cleats was carried out to study its mechanical properties. The results show that the transient electromotive force of the cable changes periodically with the power frequency period, and the peak value of the electromotive force gradually reduced in every cycle. The stress of the intermediate phase cable fixture is the largest, and plastic deformation occurs at its corner of the fixture base mounting plate; Compared with the cable support, the stress of the cable fixture is less affected by the static and dynamic analysis methods. It recommended that the static analysis can be used for qualitative analyzing of the cable fixture stress while the transient dynamics method can be used for accurately quantitatively analyzing. As the calculated stress of the cable support is greatly affected by the analysis methods, so when the cable fixture is arranged in a horizontal linear shape, the transient dynamic analysis method should be used.
format Article
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issn 1004-9649
language zho
publishDate 2021-04-01
publisher State Grid Energy Research Institute
record_format Article
series Zhongguo dianli
spelling doaj-art-e7b347e7912e458bb376bcddcf670d292025-08-20T02:53:03ZzhoState Grid Energy Research InstituteZhongguo dianli1004-96492021-04-01544727910.11930/j.issn.1004-9649.202006263zgdl-54-4-sunnaElectromagnetic-Structure Transient Coupling Analysis of Large Cross-Sectional High Voltage CablesNa SUN0Shengchun LIU1Aibin XU2Jiajun SI3China Electric Power Research Institute, Beijing 102401, ChinaChina Electric Power Research Institute, Beijing 102401, ChinaBeijing Internet Based Engineering Application Co., Ltd., Beijing 100192, ChinaChina Electric Power Research Institute, Beijing 102401, ChinaThe cable cleats play a role in fixing and supporting the cables. The cable cleats will withstand very large electromotive force when the grids are short-circuited. The deterioration of their mechanical properties may cause a serious threat to the stable operation of the grids. In this paper, the sequential coupling method of load transfer was used to establish the electromagnetic-structure finite element model of the cable cleats system. Based on Maxwell's electromagnetic theory and virtual displacement method, the transient electromagnetic field analysis of the cable was performed to obtain its magnetic field distribution and short-circuit electromotive force. As an excitation source, the transient dynamic analysis of the cable cleats was carried out to study its mechanical properties. The results show that the transient electromotive force of the cable changes periodically with the power frequency period, and the peak value of the electromotive force gradually reduced in every cycle. The stress of the intermediate phase cable fixture is the largest, and plastic deformation occurs at its corner of the fixture base mounting plate; Compared with the cable support, the stress of the cable fixture is less affected by the static and dynamic analysis methods. It recommended that the static analysis can be used for qualitative analyzing of the cable fixture stress while the transient dynamics method can be used for accurately quantitatively analyzing. As the calculated stress of the cable support is greatly affected by the analysis methods, so when the cable fixture is arranged in a horizontal linear shape, the transient dynamic analysis method should be used.https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202006263cable cleatselectromagnetic forceelectromagnetic structural couplingtransientdynamic
spellingShingle Na SUN
Shengchun LIU
Aibin XU
Jiajun SI
Electromagnetic-Structure Transient Coupling Analysis of Large Cross-Sectional High Voltage Cables
Zhongguo dianli
cable cleats
electromagnetic force
electromagnetic structural coupling
transient
dynamic
title Electromagnetic-Structure Transient Coupling Analysis of Large Cross-Sectional High Voltage Cables
title_full Electromagnetic-Structure Transient Coupling Analysis of Large Cross-Sectional High Voltage Cables
title_fullStr Electromagnetic-Structure Transient Coupling Analysis of Large Cross-Sectional High Voltage Cables
title_full_unstemmed Electromagnetic-Structure Transient Coupling Analysis of Large Cross-Sectional High Voltage Cables
title_short Electromagnetic-Structure Transient Coupling Analysis of Large Cross-Sectional High Voltage Cables
title_sort electromagnetic structure transient coupling analysis of large cross sectional high voltage cables
topic cable cleats
electromagnetic force
electromagnetic structural coupling
transient
dynamic
url https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202006263
work_keys_str_mv AT nasun electromagneticstructuretransientcouplinganalysisoflargecrosssectionalhighvoltagecables
AT shengchunliu electromagneticstructuretransientcouplinganalysisoflargecrosssectionalhighvoltagecables
AT aibinxu electromagneticstructuretransientcouplinganalysisoflargecrosssectionalhighvoltagecables
AT jiajunsi electromagneticstructuretransientcouplinganalysisoflargecrosssectionalhighvoltagecables