首页> 外文会议>International Conference on Dielectrics >Electrical treeing test of DC cable XLPE insulation under DC voltage and high temperature
【24h】

Electrical treeing test of DC cable XLPE insulation under DC voltage and high temperature

机译:直流电压和高温下直流电缆XLPE绝缘的电树测试

获取原文

摘要

Along with its increasing application in high-voltage DC transmission network, XLPE insulated cable has become a global research hotspot. To study the cable endurance to DC operation, the initiation characteristics of electrical trees in XLPE cable insulation need to be investigated under DC voltages and design temperatures. A novel treeing test configuration, consisting of a heat oil bath, a DC voltage source and a micro-imaging system, is set up for the research on the treeing characteristics of XLPE samples under DC voltage and high temperatures. Treeing tests were performed on XLPE specimens made from a 110 kV DC cable, and each specimen has a pin-plane electrode system within. Under a continuously applied DC voltage of 60 kV for 20 days, the specimens, immerged in silicon oil heated up to 90°C, showed no electrical trees. Application of 60 kV DC voltage on specimens at room temperature for 10 days could not trigger a tree either. Under the condition of grounding after pre-stressing of a DC voltage, 20 kV was high enough to initiate a tree in the XLPE DC insulation. It is concluded that electrical treeing cannot be easily caused by constant DC voltages, even under the combined action of a high voltage and an elevated temperature. The detectable damage in XLPE insulation is a joint result of space charge's injection and extraction, and the deterioration caused by charge extraction will be more serious than injection. That is why grounding after pre-stressing can trigger a tree much easier.
机译:随着其在高压直流输电网络中的越来越多的应用,交联聚乙烯绝缘电缆已经成为全球研究的热点。为了研究电缆的直流耐受性,需要在直流电压和设计温度下研究XLPE电缆绝缘中电树的启动特性。建立了一种由热油浴,直流电压源和微成像系统组成的新颖的树状测试配置,用于研究XLPE样品在直流电压和高温下的树状特性。在由110 kV DC电缆制成的XLPE标本上进行了树状测试,每个标本内部都有一个销平面电极系统。在连续施加60 kV的直流电压20天的情况下,将样品浸入加热至90°C的硅油中,没有发现电气树。在室温下在标本上施加60 kV直流电压10天也不会触发树木。在预加直流电压后接地的情况下,20 kV足够高,可以在XLPE直流绝缘中引发树状结构。结论是,即使在高压和高温的共同作用下,恒定的直流电压也不容易引起电树。 XLPE绝缘中可检测到的损坏是空间电荷注入和提取的共同结果,而电荷提取引起的劣化将比注入更严重。这就是为什么在预应力后接地可以更容易触发树木的原因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号