Water tree growth in polyethylene with direct current

E. Franke, E. Czekaj
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引用次数: 5

Abstract

High voltage dc is applied to the center conductor of submarine telecommunication coaxial cables to power evenly spaced amplifiers.1 Typical systems installed thus far have powering voltages between 3 and 6 kV, with the outer conductor in contact with sea water. Although no problems with tree growth in the polyethylene insulation have been encountered, new systems presently planned will require higher terminal voltages. In order to ensure the continued high reliability of submarine cable systems, an investigation of possible water tree growth in the polyethylene cabe core was initiated. It had been assumed that water trees do not grow with direct current.2,3 Based on our initial experiments, it appears that water trees do indeed initiate and grow with dc electrical stress, but at a much slower rate than with ac.
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水树生长在聚乙烯与直流电
在海底通信同轴电缆的中心导体上施加高压直流电,为等间距放大器供电到目前为止安装的典型系统的供电电压在3到6千伏之间,外部导体与海水接触。尽管聚乙烯绝缘材料中没有树木生长的问题,但目前计划的新系统将需要更高的终端电压。为了确保海底电缆系统的持续高可靠性,对聚乙烯电缆芯中可能存在的水树生长进行了调查。人们一直认为水树不随直流电生长。根据我们最初的实验,水树似乎确实在直流电胁迫下启动和生长,但速度比交流电胁迫慢得多。
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Session E: Solid breakdown Rapid and accurate interferometric measurements of the complex permittivity of medium loss liquids at millimeter and centimeter wavelengths Study of current peaks in Teflon due to thermal gradient Dielectric breakdown of solids and liquids at optical frequencies The calorimetric measurement of low temperature dielectric loss
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