ELECTRO-PHYSICAL PROCESSES OF DEGRADATION OF CROSS-LINKED POLYETHYLENE INSULATION OF POWER CABLES AND SELF-CARRYING INSULATED WIRES UNDER NON-SINUSOIDAL VOLTAGES AND CURRENTS

Q3 Energy
A. Shcherba, М.А. Shcherba, J. Peretyatko
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引用次数: 0

Abstract

The features of electro-physical processes of degradation of cross-linked polyethylene (XLPE) insulation of power cables and self-carrying insulated wires (SIW) are studied, taking into account water microinclusions and dendrite branches that appear in such insulation during manufacture and operation. It is substantiated that the appearance of non-sinusoidal voltages and cur-rents in power transmission lines (TL) using modern power cables and SIW with solid XLPE insulation causes an increase in electro-physical factors aimed at increasing the pulsating electromechanical pressure on the surface of solid XLPE insulation by liquid conductive microinclusions and dendrite branches and an increase in over time, their sizes along the strength of the exist-ing electric field (EF). The paper defines the patterns of change over time in the magnitude of the stressed volume and the maxi-mum pressure in the XLPE insulation and the additional impact on such patterns of higher harmonic components of electrical voltages and currents during non-sinusoidal processes in such insulation. It is indicated that such electro-physical effects on solid polymer insulation lead to an increase in the intensity of both threshold mechanisms and stochastic ones of destruction of the microstructure of the solid XLPE insulation of power cables and self-carrying insulated wires and require the development of additional regulations for standard conditions for their manufacture and operation. References 10, figures 3.
非正弦电压和电流下电力电缆和自载绝缘电线交联聚乙烯绝缘降解的电物理过程
考虑到交联聚乙烯(XLPE)绝缘材料在生产和运行过程中出现的水微团簇和枝晶分支,研究了电力电缆和自担绝缘电线(SIW)绝缘材料老化的电物理过程特征。事实证明,使用现代电力电缆和具有固体XLPE绝缘的SIW的输电线路(TL)中出现非正弦电压和电流会导致电物理因素的增加,其目的是通过液体导电微团簇和枝晶分支增加固体XLPE绝缘体表面的脉动机电压力,并增加随着时间的推移,它们的大小沿着存在的电场(EF)的强度变化。本文定义了XLPE绝缘中应力体积大小和最大压力随时间的变化模式,以及在这种绝缘中的非正弦过程中电压和电流的高次谐波分量对这种模式的额外影响。研究表明,这种对固体聚合物绝缘的电物理效应导致电力电缆和自载绝缘电线的固体交联聚乙烯绝缘微观结构破坏的阈值机制和随机机制的强度增加,并需要为其制造和运行的标准条件制定额外的规定。参考文献10,图3。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Technical Electrodynamics
Technical Electrodynamics Energy-Energy Engineering and Power Technology
CiteScore
1.80
自引率
0.00%
发文量
72
审稿时长
4 weeks
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