paper insulation
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Author(s):  
Soumyadeep Chowdhury ◽  
Nasirul Haque ◽  
Soumya Chatterjee ◽  
Sovan Dalai ◽  
Biswendu Chatterjee

2021 ◽  
Vol 28 (6) ◽  
pp. 1867-1874
Author(s):  
Enze Zhang ◽  
Jiefeng Liu ◽  
Xianhao Fan ◽  
Yiyi Zhang ◽  
Chaohai Zhang

2021 ◽  
Vol 28 (6) ◽  
pp. 1859-1866
Author(s):  
Enze Zhang ◽  
Hanbo Zheng ◽  
Yiyi Zhang ◽  
Jiefeng Liu ◽  
Zhen Shi ◽  
...  

2021 ◽  
Vol 28 (6) ◽  
pp. 2099-2107
Author(s):  
Yongqiang Wang ◽  
Ziqi Wang ◽  
Zhuo Zeng ◽  
Ruoyu Fei ◽  
Jing Shang

2021 ◽  
Vol 28 (6) ◽  
pp. 1892-1900
Author(s):  
Zewei Wang ◽  
Weigen Chen ◽  
Weiran Zhou ◽  
Ruyue Zhang ◽  
Ruimin Song ◽  
...  

Author(s):  
Liancheng Xiu ◽  
Zhiye Du ◽  
Yu Tian ◽  
Jingxuan He ◽  
Hongwei Cai ◽  
...  

Purpose The purpose of this paper is to develop a numerical simulation method based on the transient upstream finite element method (FEM) and Schottky emission theory to reveal the distribution characteristics of space charge in oil-paper insulation. Design/methodology/approach The main insulation medium of the converter transformer in high voltage direct current transmission is oil-paper insulation. However, the influence of space charge is difficult to be fully considered in the insulation design and simulation of converter transformers. To reveal the influence characteristics of the space charge, this paper proposes a numerical simulation method based on Schottky emission theory and the transient upstream FEM. This method considers the influence of factors, such as carrier mobility, carrier recombination coefficient, trap capture coefficient and diffusion coefficient on the basis of multi-physics field coupling calculation of the electric field and fluid field. Findings A numerical simulation method considering multiple charge states is proposed for the space charge problem in oil-paper insulation. Meanwhile, a space charge measurement platform based on the electrostatic capacitance probe method for oil-paper insulation structure is built, and the effectiveness and accuracy of the numerical simulation method is verified. Originality/value A variety of models are calculated and analyzed by the numerical simulation method in this paper, and the distribution characteristics of the space charge and total electric field in oil-paper insulation medium with single-layer, polarity reversal of plate voltage and double-layer are obtained. The research results of this paper have the guiding significance for the engineering application of oil-paper insulation and the optimal design of converter transformer insulation.


Energies ◽  
2021 ◽  
Vol 14 (21) ◽  
pp. 6995
Author(s):  
Bing Luo ◽  
Jian Wang ◽  
Dong Dai ◽  
Lei Jia ◽  
Licheng Li ◽  
...  

A converter transformer is important primary equipment in a DC transmission project. The voltage on the valve side winding is complex when the equipment is running, including DC, AC, and AC–DC combined voltage. The insulation structure of the valve side winding of a converter transformer is an oil-paper insulation structure, which may have a variety of defects in the manufacturing stage and daily use, resulting in partial discharge. Therefore, it is the key to studying the partial discharge characteristics and mechanism of oil-paper insulation under AC–DC combined voltage. In this paper, we build a two-dimensional air gap model of oil-paper-insulated pressboard considering the actual particles and actual reaction based on the fluid model. The characteristics and evolution mechanism of partial discharge (PD) in pressboard under different AC/DC combined voltages are studied by numerical simulation. The results show that when the DC component increases, the polarity effect of partial discharge is more obvious, while the potential and discharge intensity in the air gap decrease. Further analysis revealed that the DC component in the combined voltage accumulated a large number of surface charges on the surface of the air gap, and the space charge distribution was more uniform and dispersed, which generated an electric field with opposite polarity to the DC component in the air gap and, then, inhibited the development of local discharge in the paperboard. The results of the simulation are consistent with the previous experimental phenomena, and the mechanism analysis of the simulation results also verifies the previous analysis on the mechanism of experimental phenomena. This will lay a theoretical foundation for the further study of partial discharge phenomenon of oil-paper insulation structures in practical operation in the future.


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