Study on Oil Flow Surging and Protection Optimization for on Load Tap Changer of Converter Transformer

The on-load tap changer (OLTC) is one of the key components of converter transformer. The energy generated during tap switching process of the OLTC will cause thermal expansion and surging of the insulating oil in the chamber, resulting in the mis-operation of protective relay and threatening the sa...

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Main Authors: Haibin Zhou, Zhicheng Xie, Xing Chen, Qinggang Guan, Jun Deng, Guanwei Liu, Xiaojiang Yan
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-04-01
Series:Frontiers in Energy Research
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fenrg.2022.809127/full
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author Haibin Zhou
Zhicheng Xie
Xing Chen
Qinggang Guan
Jun Deng
Guanwei Liu
Xiaojiang Yan
author_facet Haibin Zhou
Zhicheng Xie
Xing Chen
Qinggang Guan
Jun Deng
Guanwei Liu
Xiaojiang Yan
author_sort Haibin Zhou
collection DOAJ
description The on-load tap changer (OLTC) is one of the key components of converter transformer. The energy generated during tap switching process of the OLTC will cause thermal expansion and surging of the insulating oil in the chamber, resulting in the mis-operation of protective relay and threatening the safe and stable operation of the power system as well. Therefore, taking the typical dual-transition resistance-type OLTC as an example, a numerical modeling method of OLTC oil flow surging based on the realizable k-ε model is proposed, and the fluid simulation model is established based on the FLUENT software. The quantitative relationship between the OLTC transition resistance value and the oil velocity and oil pressure at the top of the oil chamber is analyzed, that is, the smaller the transition resistance, the greater the oil flow velocity and oil pressure during switching. In addition, an equivalent experimental platform is built to carry out the static action characteristic experiment of OLTC oil flow relay, the corresponding relationship between the change range of oil pressure at the top of the chamber, and the oil velocity under typical value (1.5 m/s, 2.0 m/s, and 2.5 m/s) are revealed. Based on which, the optimization suggestions on the protection relay threshold configuration of OLTC oil velocity and oil pressure are put forward.
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spelling doaj.art-e671c7bd6ad44ae28ada9057feb323362022-12-21T23:28:15ZengFrontiers Media S.A.Frontiers in Energy Research2296-598X2022-04-011010.3389/fenrg.2022.809127809127Study on Oil Flow Surging and Protection Optimization for on Load Tap Changer of Converter TransformerHaibin Zhou0Zhicheng Xie1Xing Chen2Qinggang Guan3Jun Deng4Guanwei Liu5Xiaojiang Yan6Extra-High Voltage Transmission Company of China Southern Power Grid, Guangzhou, ChinaExtra-High Voltage Transmission Company of China Southern Power Grid, Guangzhou, ChinaShenyang Transformer Research Institute Co., Ltd., Shenyang, ChinaShenyang Transformer Research Institute Co., Ltd., Shenyang, ChinaExtra-High Voltage Transmission Company of China Southern Power Grid, Guangzhou, ChinaSchool of Energy and Power Engineering, Xi’an Jiaotong University, Xi’an, ChinaSchool of Energy and Power Engineering, Xi’an Jiaotong University, Xi’an, ChinaThe on-load tap changer (OLTC) is one of the key components of converter transformer. The energy generated during tap switching process of the OLTC will cause thermal expansion and surging of the insulating oil in the chamber, resulting in the mis-operation of protective relay and threatening the safe and stable operation of the power system as well. Therefore, taking the typical dual-transition resistance-type OLTC as an example, a numerical modeling method of OLTC oil flow surging based on the realizable k-ε model is proposed, and the fluid simulation model is established based on the FLUENT software. The quantitative relationship between the OLTC transition resistance value and the oil velocity and oil pressure at the top of the oil chamber is analyzed, that is, the smaller the transition resistance, the greater the oil flow velocity and oil pressure during switching. In addition, an equivalent experimental platform is built to carry out the static action characteristic experiment of OLTC oil flow relay, the corresponding relationship between the change range of oil pressure at the top of the chamber, and the oil velocity under typical value (1.5 m/s, 2.0 m/s, and 2.5 m/s) are revealed. Based on which, the optimization suggestions on the protection relay threshold configuration of OLTC oil velocity and oil pressure are put forward.https://www.frontiersin.org/articles/10.3389/fenrg.2022.809127/fullon-load tap changerfluid simulationoil flow surgingprotection optimizationtransformer
spellingShingle Haibin Zhou
Zhicheng Xie
Xing Chen
Qinggang Guan
Jun Deng
Guanwei Liu
Xiaojiang Yan
Study on Oil Flow Surging and Protection Optimization for on Load Tap Changer of Converter Transformer
Frontiers in Energy Research
on-load tap changer
fluid simulation
oil flow surging
protection optimization
transformer
title Study on Oil Flow Surging and Protection Optimization for on Load Tap Changer of Converter Transformer
title_full Study on Oil Flow Surging and Protection Optimization for on Load Tap Changer of Converter Transformer
title_fullStr Study on Oil Flow Surging and Protection Optimization for on Load Tap Changer of Converter Transformer
title_full_unstemmed Study on Oil Flow Surging and Protection Optimization for on Load Tap Changer of Converter Transformer
title_short Study on Oil Flow Surging and Protection Optimization for on Load Tap Changer of Converter Transformer
title_sort study on oil flow surging and protection optimization for on load tap changer of converter transformer
topic on-load tap changer
fluid simulation
oil flow surging
protection optimization
transformer
url https://www.frontiersin.org/articles/10.3389/fenrg.2022.809127/full
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