Study on the Partial Surface Discharge Process of Oil-Paper Insulated Transformer Bushing with Defective Condenser Layer

Author:

Yang Fan1ORCID,Zhang Yuchen1,Wu Xingwang2,Wu Jie2

Affiliation:

1. State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University, Chongqing 400044, China

2. State Grid Anhui Power Supply Company, Hefei 230061, China

Abstract

Oil-impregnated paper condenser transformer bushings are an important part of transformer equipment, and partial discharge (PD) occurred when defects exist on the condenser aluminum foil layers. Firstly, to study the PD process of the oil-paper insulated capacitance graded bushing with the defect of broken aluminum foil, a defective oil-paper bushing discharge sample is constructed to study the PD parameters and capacitance, and to discharge carbonization traces at different voltage levels. Then, in order to verify the process of condenser aluminum foil layer discharge and the space charge variation in the oil-paper insulation system of a sample model, the surface flashovers of a needle-plane discharge model based on the bipolar charge transport model and the hydrodynamic model was built. The simulation, by Transport of Diluted Species physics of COMSOL Multiphysics software, points out the discharge process of aluminum foil electrode caused by space charge action and electric field distortion under an electric field at different voltages. The results of simulation and sample bushing experiments showed that the PD process of the defective condenser foil layer is mainly divided into three stages: tip corona discharge, streamer in oil, and surface flashovers. The voltage amplitude is larger the more electrical branches are discharged and the shorter the discharge time is. The findings of the article have important implications for the discharge of the foil layer inside the oil-paper bushing.

Funder

National Key R&D Program of China

Science and Technology Project from the Headquarters of SGCC

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference34 articles.

1. Cigre, W.G. (2019). Transformer Bushing Reliability, CIGRE.

2. Equipment Management Department of State Grid Corporation of China (2019). Typical Fault and Defect Cases of Trans-Former Equipment: 2011–2018, China Electric Power Press.

3. Study on the Partial Discharge Difference Character-istics between Semiconductor Paper and Aluminum Foil on Capacitor Structure of Oil-Paper Insulation Bushing;Jian;High Volt. Eng.,2022

4. Influence of Insulation Paper Characteristics and Polarity Reversal on Space Charge Ef-fect of Oil-paper Insulation;Li;Proc. CSEE,2020

5. Quantitative Diagnosis of Moisture Content in Oil-paper Condenser Bush-ing Insulation Based on Frequency Domain Spectroscopy and Polarization and Depolarization Current;Liao;IET Gener. Transm. Distrib.,2017

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