标准和非标准雷电冲击电压作用下中压电缆终端的电应力分析

S. Bhattacharyya, A. Chakraborty, B. Saha, S. Chatterjee
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引用次数: 8

摘要

本文对中压电缆端部在瞬态电应力作用下的电应力进行了分析。众所周知,应力锥用于电缆接头和终端,以消除绝缘和导体屏交界处的电应力。截屏区附近的高电应力可能导致跟踪、局部放电等,最终危及电力电缆的运行,影响其长期性能。此外,电力电缆在运行过程中会受到标准和非标准雷电冲击电压形式不同的暂态电应力。因此,在本贡献中,通过应用不同的标准和非标准雷击电压,对中压电缆终端的瞬态电应力进行了全面的研究。为此,在Comsol Multiphysics Software中对11kV电缆终端进行了建模。采用有限元法对其瞬态电场进行了分析。应力锥偏转角和偏转材料的相对介电常数也会发生变化,以获得在脉冲电压应力作用下电缆终端绝缘屏连接处的电应力最小化的最佳设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electric stress analysis of a medium voltage cable termination subjected to standard and non-standard lightning impulse voltages
In the present work, electric stress analysis is performed on a MV cable termination subjected to transient electric stresses. It is well known that stress cone is used in cable joints and terminations to relief electric stresses at the junction point of insulation and conductor screen. The high electric stress near the screen-cut zone may lead to tracking, partial discharge etc. which eventually jeopardize the operation of a power cable affecting its long-term performance. Moreover, a power cable during its period of operation is subjected to different transient electric stresses in the form of standard and non-standard lightning impulse voltages. Therefore, in this contribution, a comprehensive study of transient electric stresses of a medium voltage cable termination is performed by applying different standard and non standard lightning impulse voltages. For this purpose, a 11kV cable termination is modeled in Comsol Multiphysics Software. The transient electric field analysis is performed using Finite Element method. The stress cone deflector angle and the relative permittivity of the deflector material is also varied to obtain a best possible design that minimizes the electric stress at the insulation-screen junction of a cable termination under the application of impulse voltage stresses.
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