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Influence of Cable Temperature Rise on PDC Method Test Results of Water Tree Aged Cables

机译:电缆温度升高对水树镜芯片PDC方法测试结果的影响

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There is a certain temperature rise in the field running cable because of the load bearing. To study the influence of cable temperature rise on the polarization and depolarization current (PDC) method, 10kV XLPE short cables were accelerated aging three months by water needle electrode method, and the PDC method was used to test the new and aged cables under constant humidity. The polarization and depolarization current of the cable samples was analyzed, and the conductivity and low frequency dielectric loss spectra were obtained and inspected. The results show that: in the experiment selected test temperature, the change laws of conductivity of the new and aged cables are the same, and the conductivity gradually rose after a slight drop in 40 °C; in the dielectric loss spectrum, the polarization of the new sample is low and the polarization loss changes little with temperature, and the dielectric loss is mainly affected by the conductivity, so the test result is clearly divided into two regions. And water tree aged samples have strong polarization and are obviously affected by temperature, so their low frequency dielectric loss showed the trend of first rising and then decreasing and the maximum appeared at 60 °C.
机译:由于承载轴承,现场运行电缆存在一定的温度升高。为研究电缆温度上升对极化和去极化电流(PDC)方法的影响,通过水针电极方法加速了10kV XLPE短电缆,通过水针电极方法加速老化,并且PDC方法用于在恒定湿度下测试新的和老化电缆。分析了电缆样品的偏振和去极化电流,获得电导率和低频介电损耗光谱并检查。结果表明:在实验中选择的测试温度,新的和老化电缆的电导率的变化规律是相同的,并且在40°C轻微下降后,电导率逐渐上升;在介电损耗光谱中,新样品的偏振低,极化损耗几乎没有温度变化,介电损耗主要受电导率的影响,因此测试结果明显分为两个区域。和水树老化的样品具有强烈的极化,并且明显受温度的影响,因此它们的低频介电损失显示了第一次上升的趋势,然后降低,最大值在60℃下出现。

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